Education
School ¡X Major ¡X Degree | Duration |
---|---|
°ê¥ß¦¨¥\¤j¾Ç ¡X ¤Æ¾Ç¨t(²¦) ¡X ³Õ¤h Doctorate, Department of Chemistry, National Cheng Kung University |
1996/09 ¡X 2000/06 |
°ê¥ß¦¨¥\¤j¾Ç ¡X ¤Æ¾Ç¨t(²¦) ¡X ºÓ¤h Master, Department of Chemistry, National Cheng Kung University |
1994/09 ¡X 1996/06 |
»²¤¯¤j¾Ç ¡X ¤Æ¾Ç¨t(²¦) ¡X ¾Ç¤h Bachelor, Department of Chemistry, Fu Jen Catholic University |
1990/09 ¡X 1994/06 |
Intramural Experience
Office/Department/Institute | Position | Duration |
---|---|---|
ÂåÃĺ[À³¥Î¤Æ¾Ç¨t Department of Medicinal and Applied Chemistry | Professor | 2011/08/01 ¡X |
ÂåÃĺ[À³¥Î¤Æ¾Ç¨t Department of Medicinal and Applied Chemistry | Associate Professor | 2008/02/01 ¡X 2011/07/31 |
ÂåÃĺ[À³¥Î¤Æ¾Ç¨t Department of Medicinal and Applied Chemistry | Assistant Professor | 2004/08/16 ¡X 2008/01/31 |
Extramural Experience
DEPNO | Position- Office/Department/Institute | Duration |
---|---|---|
¬ü°ê±K¦è¦è¤ñ¤j¾Ç¤Æ¾Çº[¥Íª«¤Æ¾Ç¨t | ³Õ¤h«á°Æ¬ã¨sû | 0910501 ¡X 0000000 |
Discipline
NO | Discipline | Expertise |
---|---|---|
1 | ¦ÛµM¬ì¾ÇÃþ Natural Sciences | ¤Æ¾Ç Chemistry |
Research & Technology Platform Open to the Outside
Interested Area(s)for Interdisciplinary Research
Àô¹Ò¤ÀªR¡B¥Í¤Æ¤ÀªR¡B¹q¤Æ¾Ç»sµ{¡B¦³¬r¤Æ¾Çª«µÑ¨ú»P¹q¤Æ¾Ç³B²z
Environmental analysis, Biochemical analysis, Electrochemical process
Area(s) of Expertise & Research
¹q¤Æ¾Ç¡B¤ÀªR¤Æ¾Ç¡BÂ÷¤l²GÅé
Analytical Chemistry; Electrochemistry; Ionic Liquids
Publication
NO | Publication |
---|---|
1 | Sonoelectrochemical exfoliation of defective black phosphorus nanosheet with black phosphorus quantum dots as a uric acid sensor Sonoelectrochemical exfoliation of defective black phosphorus nanosheet with black phosphorus quantum dots as a uric acid sensor |
2 | Characterization of Nanowire‑Constructed Porous CuZn and CuNiZn Nitrate‑Active Electrodes Prepared via Galvanic Displacement on Electrodeposited Zn Templates in Ionic Liquids Characterization of Nanowire‑Constructed Porous CuZn and CuNiZn Nitrate‑Active Electrodes Prepared via Galvanic Displacement on Electrodeposited Zn Templates in Ionic Liquids |
3 | Preferential deposition of gold and platinum atom on palladium nanocube as catalysts for oxidizing glucose in the phosphate-buffered solution Preferential deposition of gold and platinum atom on palladium nanocube as catalysts for oxidizing glucose in the phosphate-buffered solution |
4 | Preparation of porous Cu-rich CuNi electrodes via electrochemically dealloying in ionic liquid Preparation of porous Cu-rich CuNi electrodes via electrochemically dealloying in ionic liquid |
5 | Sonoelectrochemical nitrided graphene nanosheets with vacancies and their applications for catalysis and sensing of uric acid oxidation Sonoelectrochemical nitrided graphene nanosheets with vacancies and their applications for catalysis and sensing of uric acid oxidation |
6 | Demonstration of Feasibility Using Ionic Liquid as Electrolyte for Electrochemical Deposition and Recovery of Silver from Silver Oxide Demonstration of Feasibility Using Ionic Liquid as Electrolyte for Electrochemical Deposition and Recovery of Silver from Silver Oxide |
7 | Vacant graphene Nanosheet-Supported platinum nanoparticles as catalysts for neutral glucose oxidation reaction Vacant graphene Nanosheet-Supported platinum nanoparticles as catalysts for neutral glucose oxidation reaction |
8 | §Q¥Î§t²¸îÅf×ô°t¦ì°ò¤§¾T¶Ê¤Æ¾¯¶i¦æÀô¤v¤ºà¶}Àô»E¦X¤ÏÀ³¡G¬¡ÅDªº²¸îÅîg¦X®ÄÀ³ Ring-Opening Polymerization of £`‑Caprolactone by Using Aluminum Complexes Bearing Aryl Thioether Phenolates: Labile Thioether Chelation |
9 | Enhanced catalytic activity of copper nanoparticles electrochemically Co-deposited with cadmium towards the electroreduction of nitrate Enhanced catalytic activity of copper nanoparticles electrochemically Co-deposited with cadmium towards the electroreduction of nitrate |
10 | An Assessment of Aluminum Electrodeposition from Aluminum Chloride/4-ethylpyridine Ionic Liquid at Ambient Temperature An Assessment of Aluminum Electrodeposition from Aluminum Chloride/4-ethylpyridine Ionic Liquid at Ambient Temperature |
11 | Facile Nonenzymatic Glucose Electrode Composed of Commercial CuO Powder and Ionic Liquid Binder Facile Nonenzymatic Glucose Electrode Composed of Commercial CuO Powder and Ionic Liquid Binder |
12 | Electrochemical preparation of porous ZnCuNi by electrodeposition in ethaline deep eutectic solvent followed by anodic or cathodic dealloying in alkaline aqueous solutions for higher nitrate reduction activity Electrochemical preparation of porous ZnCuNi by electrodeposition in ethaline deep eutectic solvent followed by anodic or cathodic dealloying in alkaline aqueous solutions for higher nitrate reduction activity |
13 | Nonenzymatic glucose‐reactive electrodes fabricated from facilely‐precipitated cobalt hydroxide, commercial graphene nanopowder and ionic liquid binder Nonenzymatic glucose‐reactive electrodes fabricated from facilely‐precipitated cobalt hydroxide, commercial graphene nanopowder and ionic liquid binder |
14 | Choline Chloride-Carboxylic Acid Based Deep Eutectic Solvents as Advantageous Electrolytes for Direct Electrochemical Conversion of Tin Oxide to Tin Choline Chloride-Carboxylic Acid Based Deep Eutectic Solvents as Advantageous Electrolytes for Direct Electrochemical Conversion of Tin Oxide to Tin |
15 | Galvanic displacement on electrodeposited tangled Zn nanowire sacrificial template for preparing porous and hollow Ni electrodes in ionic liquid Galvanic displacement on electrodeposited tangled Zn nanowire sacrificial template for preparing porous and hollow Ni electrodes in ionic liquid |
16 | An excellent anode renders protic ionic liquids sustainable in metal electrodeposition An excellent anode renders protic ionic liquids sustainable in metal electrodeposition |
17 | Preparation of Ni nanotube-modified electrodes via galvanic displacement on sacrificial Zn templates: Solvent effects and attempts for non-enzymatic electrochemical detection of urea Preparation of Ni nanotube-modified electrodes via galvanic displacement on sacrificial Zn templates: Solvent effects and attempts for non-enzymatic electrochemical detection of urea |
18 | Bipolar electrodeposition of organic electrochemical transistor arrays Bipolar electrodeposition of organic electrochemical transistor arrays |
19 | Electrochemical conversion of ionic liquid-lead sulfate paste into metallic lead or lead(IV) oxide: Extracting lead from water-insoluble lead salt and formation of cobalt oxide electrocatalyst via galvanic displacement Electrochemical conversion of ionic liquid-lead sulfate paste into metallic lead or lead(IV) oxide: Extracting lead from water-insoluble lead salt and formation of cobalt oxide electrocatalyst via galvanic displacement |
20 | Cu and CuPb Electrodes Electrodeposited from Metal Oxides in Hydrophobic Protic Amide-Type Ionic Liquid/Water Mixture for Nonenzymatic Glucose Oxidation Cu and CuPb Electrodes Electrodeposited from Metal Oxides in Hydrophobic Protic Amide-Type Ionic Liquid/Water Mixture for Nonenzymatic Glucose Oxidation |
21 | Cu and CuPb electrodes prepared via potentiostatic electrodeposition from metal oxides in hydrophobic protic amide-type ionic liquid/water mixture under ambient air for nonenzymatic nitrate reduction Cu and CuPb electrodes prepared via potentiostatic electrodeposition from metal oxides in hydrophobic protic amide-type ionic liquid/water mixture under ambient air for nonenzymatic nitrate reduction |
22 | Galvanic Displacement Deposition of Bismuth on Copper in the Ambient Ethaline Deep Eutectic Solvent in the Absence and Presence of Water and Additives Galvanic Displacement Deposition of Bismuth on Copper in the Ambient Ethaline Deep Eutectic Solvent in the Absence and Presence of Water and Additives |
23 | Characterization of a new triazine-derived cupric complex immobilized on carbon electrode via electrografting showing electrocatalytic activities towards hydrogen peroxide Characterization of a new triazine-derived cupric complex immobilized on carbon electrode via electrografting showing electrocatalytic activities towards hydrogen peroxide |
24 | Electrochemical Study and Electrodeposition of Zn-Ni Alloys in an Imide-Type Hydrophobic Room-Temperature Ionic Liquid: Feasibility of Using Metal Chlorides as the Metal Sources Electrochemical Study and Electrodeposition of Zn-Ni Alloys in an Imide-Type Hydrophobic Room-Temperature Ionic Liquid: Feasibility of Using Metal Chlorides as the Metal Sources |
25 | Electrochemical study and extraction of Pb metal from Pb oxides and Pb sulfate using hydrophobic BrÈûnsted acidic amide-type ionic liquid: A feasibility demonstration Electrochemical study and extraction of Pb metal from Pb oxides and Pb sulfate using hydrophobic Bronsted acidic amide-type ionic liquid: A feasibility demonstration |
26 | Mannosyl electrochemical impedance cytosensor for label-free MDA-MB-231 cancer cell detection Mannosyl electrochemical impedance cytosensor for label-free MDA-MB-231 cancer cell detection |
27 | CuAg nanoparticles formed in situ on electrochemically pre-anodized screen-printed carbon electrodes for the detection of nitrate and nitrite anions CuAg nanoparticles formed in situ on electrochemically pre-anodized screen-printed carbon electrodes for the detection of nitrate and nitrite anions |
28 | Electropolymerization and characterization of carbazole substituted viologen conducting polymers: The effects of electrolytes and potential applications of the polymers Electropolymerization and characterization of carbazole substituted viologen conducting polymers: The effects of electrolytes and potential applications of the polymers |
29 | Template-Free Electrodeposition of Net-Like Co-Al/Oxide Structures from a Lewis Acidic Chloroaluminate Room Temperature Ionic Liquid Using a Potential Step Method Template-Free Electrodeposition of Net-Like Co-Al/Oxide Structures from a Lewis Acidic Chloroaluminate Room Temperature Ionic Liquid Using a Potential Step Method |
30 | ª÷ÄݾðªKª¬¤Æ¾Ç®Ö»Ä酶¬¡©Ê¹ïµ²¦X¿Ë©M¤Oªº«n©Ê Importance of Binding Affinity for the Activity of a Metallodendritic Chemical Nuclease |
31 | Voltammetric Study and Electrodeposition of Zinc in Hydrophobic Room-Temperature Ionic Liquid 1-Butyl-1-methylpyrrolidinium Bis((trifluoromethyl)sulfonyl)imide ([BMP][TFSI]): A Comparison between Chloride and TFSI Salts of Zinc Voltammetric Study and Electrodeposition of Zinc in Hydrophobic Room-Temperature Ionic Liquid 1-Butyl-1-methylpyrrolidinium Bis((trifluoromethyl)sulfonyl)imide ([BMP][TFSI]): A Comparison between Chloride and TFSI Salts of Zinc |
32 | Electrodeposition of compact zinc from the hydrophobic BrÈûnsted acidic ionic liquid-based electrolytes and the study of zinc stability along with the acidity manipulation Electrodeposition of compact zinc from the hydrophobic BrÈûnsted acidic ionic liquid-based electrolytes and the study of zinc stability along with the acidity manipulation |
33 | Electrodeposition and Characterization of CoP Compounds Produced from the Hydrophilic Room-Temperature Ionic Liquid 1-Butyl-1-Methylpyrrolidinium Dicyanamide Electrodeposition and Characterization of CoP Compounds Produced from the Hydrophilic Room-Temperature Ionic Liquid 1-Butyl-1-Methylpyrrolidinium Dicyanamide |
34 | §Q¥Î¦³¾÷¹q¦X¦¨¤èªk¦X¦¨£]-ßm°ò碸 An Efficient Organic Electrosynthesis of £]-Hydroxysulfones |
35 | Voltammetric Study and Electrodeposition of Ni(II)/Fe(II) in the Ionic Liquid 1-Butyl-1-Methylpyrrolidinium Dicyanamide Voltammetric Study and Electrodeposition of Ni(II)/Fe(II) in the Ionic Liquid 1-Butyl-1-Methylpyrrolidinium Dicyanamide |
36 | Electrochemical formation of palladium nanoparticles in a salicylate-based hydrophilic ionic liquid: The effect of additives on particle morphology and electrochemical behavior Electrochemical formation of palladium nanoparticles in a salicylate-based hydrophilic ionic liquid: The effect of additives on particle morphology and electrochemical behavior |
37 | Multifunctional electropolymerizable carbazole-based ionic liquids Multifunctional electropolymerizable carbazole-based ionic liquids |
38 | Electrodeposited Ag, Au, and AuAg nanoparticles on graphene oxide-modified screen-printed carbon electrodes for the voltammetric determination of free sulfide in alkaline solutions Electrodeposited Ag, Au, and AuAg nanoparticles on graphene oxide-modified screen-printed carbon electrodes for the voltammetric determination of free sulfide in alkaline solutions |
39 | Electrochemical study and recovery of Pb using 1:2 choline chloride/urea deep eutectic solvent: A variety of Pb species PbSO4, PbO2, and PbO exhibits the analogous thermodynamic behavior Electrochemical study and recovery of Pb using 1:2 choline chloride/urea deep eutectic solvent: A variety of Pb species PbSO4, PbO2, and PbO exhibits the analogous thermodynamic behavior |
40 | Voltammetric Study of Selenium and Two-Stage Electrodeposition of Photoelectrochemically Active Zinc Selenide Semiconductor Films in Ionic Liquid Zinc Chloride-1-Ethyl-3-Methylimidazolium Chloride Voltammetric Study of Selenium and Two-Stage Electrodeposition of Photoelectrochemically Active Zinc Selenide Semiconductor Films in Ionic Liquid Zinc Chloride-1-Ethyl-3-Methylimidazolium Chloride |
41 | Easy-to-prepare electrochemical platform composed of ionic liquid-Ni(II)-graphite composites: laboratory study on electrochemical oxidation of urea, alcohols, and glucose Easy-to-prepare electrochemical platform composed of ionic liquid-Ni(II)-graphite composites: laboratory study on electrochemical oxidation of urea, alcohols, and glucose |
42 | Electrochemical study of a new non-heme iron complex-modified carbon ionic liquid electrode with electrocatalytic activity towards hydrogen peroxide reduction Electrochemical study of a new non-heme iron complex-modified carbon ionic liquid electrode with electrocatalytic activity towards hydrogen peroxide reduction |
43 | New Copper Complexes Incorporated with the One-Step Preparation of Ionic Liquid Carbon Paste Electrode for Highly Selectively Reducing Hydrogen Peroxide New Copper Complexes Incorporated with the One-Step Preparation of Ionic Liquid Carbon Paste Electrode for Highly Selectively Reducing Hydrogen Peroxide |
44 | Voltammetric study and electrodeposition of tellurium, lead, and leadtelluride in room-temperature ionic liquid 1-ethyl-3-methylimidazolium tetrafluoroborate Voltammetric study and electrodeposition of tellurium, lead, and leadtelluride in room-temperature ionic liquid 1-ethyl-3-methylimidazolium tetrafluoroborate |
45 | An ionic liquid-Fe3O4 nanoparticles-graphite composite electrode used for nonenzymatic electrochemical determination of hydrogen peroxide An ionic liquid-Fe3O4 nanoparticles-graphite composite electrode used for nonenzymatic electrochemical determination of hydrogen peroxide |
46 | Fabrication of macroporous Pt and PtAu electrodes for electrochemical application through galvanic replacement at macroporous Cu electrode electrodeposited at polystyrene template from room temperature ionic liquid Fabrication of macroporous Pt and PtAu electrodes for electrochemical application through galvanic replacement at macroporous Cu electrode electrodeposited at polystyrene template from room temperature ionic liquid |
47 | Electrochemical Oxidation and Determination of Glucose Using Cyclic Voltammetry and a One-step Prepared Nanoporous Gold Wire Electrode Electrochemical Oxidation and Determination of Glucose Using Cyclic Voltammetry and a One-step Prepared Nanoporous Gold Wire Electrode |
48 | Anion Reduction Dominated Cathodic Limit of Metal-Free Ionic Liquid: Experimental and Theoretical Proofs Anion Reduction Dominated Cathodic Limit of Metal-Free Ionic Liquid: Experimental and Theoretical Proofs |
49 | Spiral nanoporous gold electrode: a simple strategy for enhancing the attenuated-total-reflection infrared spectroelectrochemical sensitivity Spiral nanoporous gold electrode: a simple strategy for enhancing the attenuated-total-reflection infrared spectroelectrochemical sensitivity |
50 | Electrochemical detection of hydrazine using a highly sensitive nanoporous gold electrode Electrochemical detection of hydrazine using a highly sensitive nanoporous gold electrode |
51 | Electrochemical preparation of photoelectrochemically active CuI thin films from room temperature ionic liquid Electrochemical preparation of photoelectrochemically active CuI thin films from room temperature ionic liquid |
52 | Voltammetric study and electrodeposition of copper in 1-butyl-3-methylimidazolium salicylate ionic liquid Voltammetric study and electrodeposition of copper in 1-butyl-3-methylimidazolium salicylate ionic liquid |
53 | Extraction of Cupric Ions with Ionic Liquids Containing Polypyridine-type Small Molecules or Peripherally Pyridine-modified Dendrimers Extraction of Cupric Ions with Ionic Liquids Containing Polypyridine-type Small Molecules or Peripherally Pyridine-modified Dendrimers |
54 | Voltammetric behavior of Pd(II) and Ni(II) ions and electrodeposition of PdNi bimetal in N-butyl-N-methylpyrrolidinium dicyanamide ionic liquid Voltammetric behavior of Pd(II) and Ni(II) ions and electrodeposition of PdNi bimetal in N-butyl-N-methylpyrrolidinium dicyanamide ionic liquid |
55 | Gold Nanoparticle-electrodeposited Electrodes Used for p-Nitrophenol Detection in Acidic Media: Effect of Electrodeposition Parameters on Particle Density, Size Distribution, and Electrode Performance Gold Nanoparticle-electrodeposited Electrodes Used for p-Nitrophenol Detection in Acidic Media: Effect of Electrodeposition Parameters on Particle Density, Size Distribution, and Electrode Performance |
56 | ª÷ÄݾðªKª¬¤À¤l¤Î¾ðªKª¬¤À¤l½Æ¦X§÷®Æ Metallodendrimers and Dendrimer Nanocomposites |
57 | Formation of noble metal nanoparticles through chemical reduction induced by coordination-alteration of complex ions in ionic liquids and electroanalytical application Formation of noble metal nanoparticles through chemical reduction induced by coordination-alteration of complex ions in ionic liquids and electroanalytical application |
58 | Sensitivity evaluation of rhodamine B hydrazide towards nitric oxide and its application for macrophage cells imaging Sensitivity evaluation of rhodamine B hydrazide towards nitric oxide and its application for macrophage cells imaging |
59 | ¤@Ó¤£´M±`¥|®ÖÅK²¸²§Ùæ°ò¥¨Àô¤Æ¦Xª«ªº¦Û²Õ¸Ë¤Î®ñ¤ÆÁÙì¤Õ¥Þ½Õ¸` Self-Assembly and Redox Modulation of the Cavity Size of an Unusual Rectangular Iron Thiolate Aryldiisocyanide Metallocyclophane |
60 | Electrodeposition of macroporous silver films from ionic liquids and assessment of these films in the electrocatalytic reduction of nitrate Electrodeposition of macroporous silver films from ionic liquids and assessment of these films in the electrocatalytic reduction of nitrate |
61 | Electrochemical Determination of Cu(II) Ions in Chloride-Rich Environment Using Polyviologen-Modified Glassy Carbon Electrodes Electrochemical Determination of Cu(II) Ions in Chloride-Rich Environment Using Polyviologen-Modified Glassy Carbon Electrodes |
62 | Electrochemical study of Pt and Fe and electrodeposition of PtFe alloys from air- and water-stable room temperature ionic liquids Electrochemical study of Pt and Fe and electrodeposition of PtFe alloys from air- and water-stable room temperature ionic liquids |
63 | PdNi- and Pd-coated electrodes prepared by electrodeposition from ionic liquid for nonenzymatic electrochemical determination of ethanol and glucose in alkaline media PdNi- and Pd-coated electrodes prepared by electrodeposition from ionic liquid for nonenzymatic electrochemical determination of ethanol and glucose in alkaline media |
64 | Extracting Cu(II) from aqueous solutions with hydrophobic room-temperature ionic liquid in the presence of a pyridine-based ionophore to attempt Cu recovery: A laboratory study Extracting Cu(II) from aqueous solutions with hydrophobic room-temperature ionic liquid in the presence of a pyridine-based ionophore to attempt Cu recovery: A laboratory study |
65 | Electrochemical formation of polycarbazole films in air- and water-stable room-temperature ionic liquids Electrochemical formation of polycarbazole films in air- and water-stable room-temperature ionic liquids |
66 | Electrodeposition of Ni-Cu alloys in an air and water stable room temperature ionic liquid Electrodeposition of Ni-Cu alloys in an air and water stable room temperature ionic liquid |
67 | Electrodeposition of Nanostructured Sn in 1-ethyl-3-methylimidazolium dicyanamide Room Temperature Ionic Liquid Electrodeposition of Nanostructured Sn in 1-ethyl-3-methylimidazolium dicyanamide Room Temperature Ionic Liquid |
68 | Electrochemical codeposition of copper and manganese from room-temperature N-butyl-N-methylpyrrolidinium bis(trifluoromethylsulfonyl)imide ionic liquid Electrochemical codeposition of copper and manganese from room-temperature N-butyl-N-methylpyrrolidinium bis(trifluoromethylsulfonyl)imide ionic liquid |
69 | Polyviologen Modified Glassy Carbon Electrode Employed for Anodic Stripping Voltammetric Determination of Mercury(II) Polyviologen Modified Glassy Carbon Electrode Employed for Anodic Stripping Voltammetric Determination of Mercury(II) |
70 | Dicyanamide anion based ionic liquids for electrodeposition of metals Dicyanamide anion based ionic liquids for electrodeposition of metals |
71 | Electrochemical Study of Copper in the 1-Ethyl-3-Methylimidazolium Dicyanamide Room Temperature Ionic Liquid Electrochemical Study of Copper in the 1-Ethyl-3-Methylimidazolium Dicyanamide Room Temperature Ionic Liquid |
72 | Manganese films electrodeposited at different potentials and temperatures in ionic liquid and their application as electrode materials for supercapacitors Manganese films electrodeposited at different potentials and temperatures in ionic liquid and their application as electrode materials for supercapacitors |
73 | Electrodeposition behavior of nickel in the water- and air-stable 1-ethyl-3-methylimidazolium-dicyanamide room-temperature ionic liquid Electrodeposition behavior of nickel in the water- and air-stable 1-ethyl-3-methylimidazolium-dicyanamide room-temperature ionic liquid |
74 | Voltammetric study and electrochemical detection of hexavalent chromium at gold nanoparticle-electrodeposited indium tinoxide (ITO) electrodes in acidic media Voltammetric study and electrochemical detection of hexavalent chromium at gold nanoparticle-electrodeposited indium tinoxide (ITO) electrodes in acidic media |
75 | Voltammetric study of polyviologen and the application of polyviologen-modified glassy carbon electrode in amperometric detection of vitamin C Voltammetric study of polyviologen and the application of polyviologen-modified glassy carbon electrode in amperometric detection of vitamin C |
76 | Electrochemistry of Manganese in the Hydrophilic N-Butyl-N-methylpyrrolidinium Dicyanamide Room-Temperature Ionic Liquid Electrochemistry of Manganese in the Hydrophilic N-Butyl-N-methylpyrrolidinium Dicyanamide Room-Temperature Ionic Liquid |
77 | Fabrication of Porous Tin by Template-Free Electrodeposition of Tin Nanowires from an Ionic Liquid Fabrication of Porous Tin by Template-Free Electrodeposition of Tin Nanowires from an Ionic Liquid |
78 | Preparation of Manganese Thin Film in Room-Temperature Butylmethylpyrrolidinium Bis(trifluoromethylsulfony)imide Ionic Liquid and Its Application for Supercapacitors Preparation of Manganese Thin Film in Room-Temperature Butylmethylpyrrolidinium Bis(trifluoromethylsulfony)imide Ionic Liquid and Its Application for Supercapacitors |
79 | The electrodeposition of Mn and Zn¡VMn alloys from the room-temperature tri-1-butylmethylammonium bis((trifluoromethane)sulfonyl)imide ionic liquid The electrodeposition of Mn and Zn¡VMn alloys from the room-temperature tri-1-butylmethylammonium bis((trifluoromethane)sulfonyl)imide ionic liquid |
80 | The Assessment of Removing Strontium and Cesium Cations from Aqueous Solutions Based on the Combined Methods of Ionic Liquid Extraction and Electrodeposition The Assessment of Removing Strontium and Cesium Cations from Aqueous Solutions Based on the Combined Methods of Ionic Liquid Extraction and Electrodeposition |
81 | Electrochemical Detection of 2-Naphthol at a Glassy Carbon Electrode Modified with Tosflex Film Electrochemical Detection of 2-Naphthol at a Glassy Carbon Electrode Modified with Tosflex Film |
82 | THE BIS((TRIFLUOROMETHYL)SULFONYL)IMIDE-BASED ROOM TEMPERATURE IONIC LIQUIDS USED FOR SEVERAL ELECTROCHEMICAL APPLICATIONS THE BIS((TRIFLUOROMETHYL)SULFONYL)IMIDE-BASED ROOM TEMPERATURE IONIC LIQUIDS USED FOR SEVERAL ELECTROCHEMICAL APPLICATIONS |
83 | Electrochemical study and electrodeposition of manganese in the hydrophobic butylmethylpyrrolidinium bis((trifluoromethyl)sulfonyl) imide room-temperature ionic liquid Electrochemical study and electrodeposition of manganese in the hydrophobic butylmethylpyrrolidinium bis((trifluoromethyl)sulfonyl) imide room-temperature ionic liquid |
84 | Tris(3,5-dimethylpyrazol-1-yl)methane »É¤@»ù¤Æ¦Xª«: ¦X¦¨, µ²ºc»P¤ÏÀ³©Ê Dinuclear copper(I) complexes of tris(3,5-dimethylpyrazol-1-yl)methane: Synthesis, structure, and reactivity |
85 | Â÷¤l²GÅ骺µo®i¤Î¨ä¦b¹q¤Æ¾Ç»P¨ä¥¦»â°ìªºÀ³¥Î¡X¿W¯Sªº·»¾¯¨t²Î The Developments of Ionic Liquids and Their Applications in Electrochemistry and other Fields―The Unique Solvents |
86 | Electrochemical Behavior of the Li+/Li Couple and Stability of Lithium Deposits in the Tri-1-butylmethylammonium bis((trifluoromethyl)sulfonyl)imide Room Temperature Ionic Liquid Electrochemical Behavior of the Li+/Li Couple and Stability of Lithium Deposits in the Tri-1-butylmethylammonium bis((trifluoromethyl)sulfonyl)imide Room Temperature Ionic Liquid |
87 | Electrochemistry of ionophore-coordinated Cs and Sr ions in the tri-1-butylmethylammonium bis((trifluoromethyl)sulfonyl)imide ionic liquid Electrochemistry of ionophore-coordinated Cs and Sr ions in the tri-1-butylmethylammonium bis((trifluoromethyl)sulfonyl)imide ionic liquid |
88 | Electrodeposition of cesium at mercury electrodes in the tri-1-butylmethylammonium bis((trifluoromethyl)sulfonyl)imide room-temperature ionic liquid Electrodeposition of cesium at mercury electrodes in the tri-1-butylmethylammonium bis((trifluoromethyl)sulfonyl)imide room-temperature ionic liquid |
89 | Electrodeposition of Zinc Telluride from a Zinc Chloride-1-Ethyl-3-methylimidazolium Chloride Molten Salt Electrodeposition of Zinc Telluride from a Zinc Chloride-1-Ethyl-3-methylimidazolium Chloride Molten Salt |
90 | NMR evidence of hydrogen bonding in 1-ethyl-3-methylimidazolium-tetrafluoroborate room temperature ionic liquid NMR evidence of hydrogen bonding in 1-ethyl-3-methylimidazolium-tetrafluoroborate room temperature ionic liquid |
91 | Electrodeposition of cobalt and zinccobalt alloys from a lewis acidic zinc chloride-1-ethyl-3-methylimidazolium chloride molten salt Electrodeposition of cobalt and zinccobalt alloys from a lewis acidic zinc chloride-1-ethyl-3-methylimidazolium chloride molten salt |
92 | Electrodeposition of Cu-Zn Alloy from a Lewis Acidic ZnCl2-EMIC Molten Salt Electrodeposition of Cu-Zn Alloy from a Lewis Acidic ZnCl2-EMIC Molten Salt |
93 | Electrochemistry of Cd(II) in the basic 1-ethyl-3-methylimidazolium chloride:tetrafluoroborate room temperature molten salt Electrochemistry of Cd(II) in the basic 1-ethyl-3-methylimidazolium chloride:tetrafluoroborate room temperature molten salt |
94 | Electrochemical study of copper in a basic 1-ethyl-3-methylimidazolium tetrafluoroborate room temperature molten salt Electrochemical study of copper in a basic 1-ethyl-3-methylimidazolium tetrafluoroborate room temperature molten salt |
95 | Electrochemistry of Gallium in the Lewis Acidic Aluminum Chloride-1-Methyl-3-ethylimidazolium Chloride Room-Temperature Molten Salt Electrochemistry of Gallium in the Lewis Acidic Aluminum Chloride-1-Methyl-3-ethylimidazolium Chloride Room-Temperature Molten Salt |
96 | Electrochemical Studies of Chromium(lll) and Chromium(ll) Chloride Complexes in Basic Aluminum Chloride-i -Methyl-3-ethylimidazolium Chloride Room Temperature Molten Salts Electrochemical Studies of Chromium(lll) and Chromium(ll) Chloride Complexes in Basic Aluminum Chloride-i -Methyl-3-ethylimidazolium Chloride Room Temperature Molten Salts |
Project
NO |
YEAR ¡X Source ¡X No ¡X Type
Project Name
|
Duration |
---|---|---|
1 |
113 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSTC113-2113-M-037-014 ¡X 1 Ó¤H«¬
±´°QÂ÷¤l²GÅ餺±Ä¤£¦P¹q¤Æ¾Ç¤èªk»s³Æª÷ÄÝIJ´C¹q·¥©óµv»ÄÆQ¡B§¿¯À¤ÎÁp®ò¤§°»´ú»P¶Ê¤Æ¤Î¥ÃÄò¤Æ¾ÇªºÀ³¥Î(1/3)( )
|
2024/08/01 ~ 2025/07/31 |
2 |
112 ¡X KK °ª¬ì¤j°ªÂå²£¾Ç¦X§@¸É§U ¡X ¡X 3 ²£¾Ç¦X§@
¦h¤Õ¤¤ªÅ®ñ¤Æ¨È»É©`¦Ì²yIJ´C¶Ê¤Æ¤G®ñ¤ÆºÒÂà¤Æ¥Í¦¨¤A²m( )
|
2023/11/01 ~ 2024/12/31 |
3 |
112 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSTC112-2113-M-037-001 ¡X 1 Ó¤H«¬
Â÷¤l²GÅ餺¥H¹q¤Æ¾Çªk»s³Æ¨ã¤¤ªÅ/¤Õ¬}©`¦Ìµ²ºc¹q·¥»P¦Ûª÷ÄÝ®ñ¤Æª«¦^¦¬ª÷Äݸ귽¤§¬ã¨s(3/3)( )
|
2023/08/01 ~ 2024/07/31 |
4 |
112 ¡X TC ¬ã¨s¤¤¤ßpµe ¡X KMU-TC112A00 ¡X 6 ¬ã¨s¤¤¤ß
KMU-112¦~«×®Õ¯Å¬ã¨s¤¤¤ßpµe-¾Ç³N-¬ãµo³B¯d±±²ÎÄw´Ú(¦æ¬FºÞ²z¶O)( )
|
2023/01/01 ~ 2023/12/31 |
5 |
111 ¡X KK °ª¬ì¤j°ªÂå²£¾Ç¦X§@¸É§U ¡X ¡X
«D»Ã¯À«¬¹`°ò¸²µå¿}·P´ú¾¹¤§¬ãµo( )
|
2022/11/01 ~ 2023/10/31 |
6 |
111 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST111-2113-M-037-019 ¡X 1 Ó¤H«¬
Â÷¤l²GÅ餺¥H¹q¤Æ¾Çªk»s³Æ¨ã¤¤ªÅ/¤Õ¬}©`¦Ìµ²ºc¹q·¥»P¦Ûª÷ÄÝ®ñ¤Æª«¦^¦¬ª÷Äݸ귽¤§¬ã¨s(2/3)( )
|
2022/08/01 ~ 2023/10/31 |
7 |
111 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X NSTC112-2813-C-037-081-M ¡X 8 ¤j±M¾Ç¥Í¬ã¨spµe
112¦~«×¤j±M¾Ç¥Í¬ã¨spµe-¼Ú¶§§Ê¨j(Âå¤Æ3)( )
|
2023/07/01 ~ 2024/02/29 |
8 |
110 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST110-2113-M-037-010 ¡X 1 Ó¤H«¬
Â÷¤l²GÅ餺¥H¹q¤Æ¾Çªk»s³Æ¨ã¤¤ªÅ/¤Õ¬}©`¦Ìµ²ºc¹q·¥»P¦Ûª÷ÄÝ®ñ¤Æª«¦^¦¬ª÷Äݸ귽¤§¬ã¨s(1/3)( )
|
2021/08/01 ~ 2022/10/31 |
9 |
110 ¡X TC ¬ã¨s¤¤¤ßpµe ¡X KMUTC111IFSP00 ¡X
111¦~«×®Õ¯Å¾Ç³N¬ã¨s¤¤¤ß¸ó°ìºXÄ¥«¬pµe-¬ã¨sµo®i³B(²ÎÄw´Ú)( )
|
2022/01/01 ~ 2022/12/31 |
10 |
109 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST109-2113-M-037-016 ¡X 1 Ó¤H«¬
Â÷¤l²GÅé¹q¸Ñ½è¤º»s³Æ¨ã©`¦Ìµ²ºc¤§ª÷ÄÝIJ´C¹q·¥¤Î¹q¶ù±µ×¹¢¹q·¥¤§¬ã¨s»PÀ³¥Î(3/3)( )
|
2020/08/01 ~ 2021/10/31 |
11 |
109 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X MOST110-2813-C-037-002-M ¡X 8 ¤j±M¾Ç¥Í¬ã¨spµe
110¦~«×¤j±M¾Ç¥Í¬ã¨spµe-¼ï§æ¢(Âå¤Æ3)( )
|
2021/07/01 ~ 2022/02/28 |
12 |
108 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST108-2113-M-037-002 ¡X 1 Ó¤H«¬
Â÷¤l²GÅé¹q¸Ñ½è¤º»s³Æ¨ã©`¦Ìµ²ºc¤§ª÷ÄÝIJ´C¹q·¥¤Î¹q¶ù±µ×¹¢¹q·¥¤§¬ã¨s»PÀ³¥Î(2/3)( )
|
2019/08/01 ~ 2020/10/31 |
13 |
108 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X MOST109-2813-C-037-066-M ¡X 8 ¤j±M¾Ç¥Í¬ã¨spµe
109¦~«×¤j±M¾Ç¥Í¬ã¨spµe-³¢«ä§±(Âå¤Æ3)( )
|
2020/07/01 ~ 2021/02/28 |
14 |
107 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST107-2113-M-037-009 ¡X 1 Ó¤H«¬
Â÷¤l²GÅé¹q¸Ñ½è¤º»s³Æ¨ã©`¦Ìµ²ºc¤§ª÷ÄÝIJ´C¹q·¥¤Î¹q¶ù±µ×¹¢¹q·¥¤§¬ã¨s»PÀ³¥Î(1/3)( )
|
2018/08/01 ~ 2019/08/31 |
15 |
107 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X MOST108-2813-C-037-014-M ¡X 8 ¤j±M¾Ç¥Í¬ã¨spµe
108¦~«×¤j±M¾Ç¥Í¬ã¨spµe-®}§J¿²(Âå¤Æ3)( )
|
2019/07/01 ~ 2020/02/29 |
16 |
106 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST106-2113-M-037-014 ¡X 1 Ó¤H«¬
¹q¤Æ¾Çµ²¦XÂ÷¤l²GÅé©óª÷Äݸ귽´`Àô¦A¥Í¡B¯à¶qÀx¦s¤Î×¹¢¹q·¥»s³Æªº¬ã¨s»P¤ÀªR¤WªºÀ³¥Î( )
|
2017/08/01 ~ 2018/09/30 |
17 |
105 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST105-2113-M-037-002 ¡X 1 Ó¤H«¬
«Ç·ÅÂ÷¤l²GÅé¤Î¥i¹q»E¦XÂ÷¤l²GÅé©ó»s³Æ¨ã¹q¶Ê¤Æ©Ê×¹¢¹q·¥ªº¬ã¨s»PÀ³¥Î(2/2)( )
|
2016/08/01 ~ 2017/09/30 |
18 |
105 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X MOST105-2811-M-037-006 ¡X 9 ³Õ¤h«á¬ã¨sû
³Õ¤h«á¬ã¨sû--´ö©yæ¢( )
|
2016/08/01 ~ 2017/07/31 |
19 |
104 ¡X NK °ªÂå-¤¤¤s¦X§@pµe ¡X NSYSUKMU104-I08-3 ¡X 2 ¾ã¦X«¬
²mÂùÍP§ÜÀùÃĪ«²ÓM¬r©Ê¤§¹q¤Æ¾Ç§Ö³t¿z¿ï¥¥xªº¶}µo»P¬ã¨s( )
|
2015/01/01 ~ 2015/12/31 |
20 |
104 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X MOST104-2113-M-037-006 ¡X 1 Ó¤H«¬
«Ç·ÅÂ÷¤l²GÅé¤Î¥i¹q»E¦XÂ÷¤l²GÅé©ó»s³Æ¨ã¹q¶Ê¤Æ©Ê×¹¢¹q·¥ªº¬ã¨s»PÀ³¥Î(1/2)( )
|
2015/08/01 ~ 2016/08/31 |
21 |
104 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X MOST105-2811-M-037-002 ¡X 9 ³Õ¤h«á¬ã¨sû
³Õ¤h«á¬ã¨sû--´ö©yæ¢( )
|
2016/03/01 ~ 2016/07/31 |
22 |
103 ¡X NK °ªÂå-¤¤¤s¦X§@pµe ¡X NSYSUKMU103-I008-3 ¡X 2 ¾ã¦X«¬
¹q¤Æ¾Ç¶q²mÂùÍP§ÜÀùÃĪ«¤§ÁÙì¹q¦ì°µ¬°ÃĪ«¬¡©Ê§Ö³t¿z¿ï¥¥x¤§¬ã¨s( )
|
2014/01/01 ~ 2014/12/31 |
23 |
103 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC101-2113-M-037-001-MY3 ¡X 1 Ó¤H«¬
ºñ¦â«Ç·ÅÂ÷¤l²GÅ餺²©ö»s³Æª÷ÄÝ©`¦Ì²É¤l¤Î¤Æ¦Xª«¥ú¹q¥b¾ÉÅ餧¬ã¨s»P¹q¤Æ¾Ç¤WªºÀ³¥Î(3/3)( )
|
2014/08/01 ~ 2015/07/31 |
24 |
102 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC101-2113-M-037-001-MY3 ¡X 1 Ó¤H«¬
ºñ¦â«Ç·ÅÂ÷¤l²GÅ餺²©ö»s³Æª÷ÄÝ©`¦Ì²É¤l¤Î¤Æ¦Xª«¥ú¹q¥b¾ÉÅ餧¬ã¨s»P¹q¤Æ¾Ç¤WªºÀ³¥Î(2/3)( )
|
2013/08/01 ~ 2015/07/31 |
25 |
101 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC101-2113-M-037-001-MY3 ¡X 1 Ó¤H«¬
ºñ¦â«Ç·ÅÂ÷¤l²GÅ餺²©ö»s³Æª÷ÄÝ©`¦Ì²É¤l¤Î¤Æ¦Xª«¥ú¹q¥b¾ÉÅ餧¬ã¨s»P¹q¤Æ¾Ç¤WªºÀ³¥Î(1/3)( )
|
2012/08/01 ~ 2015/07/31 |
26 |
100 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC98-2113-M-037-007-MY3 ¡X 1 Ó¤H«¬
Â÷¤l²GÅéµ²¦X¹q¤Æ¾Ç©óºñ¦â¤Æ¾Ç¤Î¿U®Æ¹q¦À©Î¥Íª«¿U®Æ¹q¦À¤Wªº¬ã¨s»PÀ³¥Î(3/3)( )
|
2011/08/01 ~ 2012/08/31 |
27 |
100 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X NSC101-2815-C-037-014-M ¡X 8 ¤j±M¾Ç¥Í¬ã¨spµe
101¦~«×¤j±M¾Ç¥Í°Ñ»P±MÃD¬ã¨spµe--Ĭ¬PµØ(À³¤Æ3)( )
|
2012/07/01 ~ 2013/02/28 |
28 |
099 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC98-2113-M-037-007-MY3 ¡X 1 Ó¤H«¬
Â÷¤l²GÅéµ²¦X¹q¤Æ¾Ç©óºñ¦â¤Æ¾Ç¤Î¿U®Æ¹q¦À©Î¥Íª«¿U®Æ¹q¦À¤Wªº¬ã¨s»PÀ³¥Î(2/3)( )
|
2010/08/01 ~ 2012/08/31 |
29 |
099 ¡X Z ¤j±M¾Ç¥Í¬ã¨spµe¤Î³Õ¤h«á ¡X NSC100-2815-C-037-001-M ¡X 8 ¤j±M¾Ç¥Í¬ã¨spµe
100¦~«×¤j±M¾Ç¥Í°Ñ»P±MÃD¬ã¨spµe--®}¹ç§±(Âå¤Æ3)( )
|
2011/07/01 ~ 2012/02/29 |
30 |
098 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC98-2119-M-037-002 ¡X 1 Ó¤H«¬
Â÷¤l²GÅéµ²¦X¹q¤Æ¾Ç©óºñ¦â¤Æ¾Ç¤Î¿U®Æ¹q¦À©Î¥Íª«¿U®Æ¹q¦À¤Wªº¬ã¨s»PÀ³¥Î-¤¤«¬»ö¾¹¸É§U( )
|
2009/06/01 ~ 2010/05/31 |
31 |
098 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC98-2113-M-037-007-MY3 ¡X 1 Ó¤H«¬
Â÷¤l²GÅéµ²¦X¹q¤Æ¾Ç©óºñ¦â¤Æ¾Ç¤Î¿U®Æ¹q¦À©Î¥Íª«¿U®Æ¹q¦À¤Wªº¬ã¨s»PÀ³¥Î(1/3)( )
|
2009/08/01 ~ 2012/08/31 |
32 |
097 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC96-2113-M-037-014-MY2 ¡X 1 Ó¤H«¬
«Ç·ÅÂ÷¤l²GÅéµ²¦X¹q¤Æ¾ÇÀ³¥Î©ó¥ÃÄò¤Æ¾Ç¤Î»s³Æ¹q¶Ê¤Æ¥Î¹q»E¦X°ª¤À¤l/ª÷ÄÝ©`¦Ì·L²É²V¦X½¤»P¦Xª÷Áá¼h¤§¬ã¨s(¤@)(2/2)( )
|
2008/08/01 ~ 2009/07/31 |
33 |
096 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC96-2113-M-037-014-MY2 ¡X 1 Ó¤H«¬
«Ç·ÅÂ÷¤l²GÅéµ²¦X¹q¤Æ¾ÇÀ³¥Î©ó¥ÃÄò¤Æ¾Ç¤Î»s³Æ¹q¶Ê¤Æ¥Î¹q»E¦X°ª¤À¤l/ª÷ÄÝ©`¦Ì·L²É²V¦X½¤»P¦Xª÷Áá¼h¤§¬ã¨s(¤@)(1/2)( )
|
2007/08/01 ~ 2009/07/31 |
34 |
095 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC95-2113-M-037-018- ¡X 1 Ó¤H«¬
Â÷¤l²GÅ餤¥H¹q¤Æ¾Ç¨H¿nªk»s³Æ¯S¥Î¦Xª÷¤Î°ª¤À¤l/ª÷ÄÝ·L²É²V¦X½¤¨Ã¥Î©ó¹q¶Ê¤Æ¤ÏÀ³¤§¬ã¨s( )
|
2006/08/01 ~ 2007/07/31 |
35 |
094 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC94-2113-M-037-004- ¡X 1 Ó¤H«¬
·s«¬«Ç·ÅÂ÷¤l²GÅé¥Î©óÆPª÷ÄÝ¡BÆP¤gª÷Äݹq¦À¶§·¥¤Î¹q¨H¿n¯S¥Î¦Xª÷§÷®Æ¤§¬ã¨s(2/2)( )
|
2005/08/01 ~ 2006/07/31 |
36 |
093 ¡X N °ê¬ì·|(ì¬ì§Þ³¡) ¡X NSC 93-2119-M-037-001- ¡X 1 Ó¤H«¬
·s«¬«Ç·ÅÂ÷¤l²GÅé¥Î©óÆPª÷ÄÝ¡BÆP¤gª÷Äݹq¦À¶§·¥¤Î¹q¨H¿n¯S¥Î¦Xª÷§÷®Æ¤§¬ã¨s(1/2)( )
|
2004/12/01 ~ 2005/07/31 |