政府計畫(GRB),建議「依年度遞減排序」,以查看最新的研究方向。
畢業學年度 | 論文標題 | 連結 | 學位 | 畢業時長(years) |
---|---|---|---|---|
關鍵字 | ||||
110 | 植物油的物... 植物油的物理及化學性質 (Physical and Chemical Properties of Vegetable Cooking Oils) | NTHU NDLTD | 碩 | 2.44 |
大豆油(soybean oil)、芥花油(canola oil)、葵花油(sunflower oil)、橄欖油(olive oil)、調和油(mixed oil)、植物油加熱(vegetable oil heated) 大豆油(s... | ||||
109 | 利用原子層... 利用原子層沉積法於蜂窩狀結構上製備鉭基光觸媒並藉Z-scheme及局部性表面電漿共振效應提升其光催化水解產氫 (Fabrication of Ta-based Photocatalysts on a Nanohoneycomb Structure by ALD and Their Improved Photocatalytic Hydrogen Evolutions by Z-scheme and Localized Surface Plasmon Resonance Effect) | NTHU NDLTD | 碩 | 2.94 |
產氫(H2 evolution)、氮化鉭(Ta3N5)、氧化鎢(WO3)、氧化鉭(Ta2O5)、原子層沉積法(ALD)、奈米蜂窩狀結構(Nanohoneycomb)、局部性表面電漿共振效應(Z-scheme) 產氫(H2... | ||||
109 | 利用奈米球... 利用奈米球微影術製備鉭基蜂窩狀結構並藉表面電漿效應及Z-scheme異質結構提升其光催化水解產氫 (Fabrication of Ta-based Nanohoneycombs by Nanosphere Lithography and Their Improved Photocatalytic Hydrogen Generation by Surface Plasmon Effect and Z-scheme Structure) | NTHU NDLTD | 碩 | 2.19 |
光觸媒(Photocatalyst)、光催化產輕(Hydrogen evolution)、水解產氫(Z-scheme structure)、Z-scheme異質結構(solution-based nanosphere lithography)、奈米球微影技術(Nanohoneycomb)、蜂窩狀結構(Tantalum oxide)、氧化鉭(Tantalum nitride)、氮化鉭(Tungsten oxide)、氧化鎢(Atomic layer deposition)、原子層沉積(Surface plasmon resonance)、表面電漿效應(Water splitting) 光觸媒(P... | ||||
108 | 原子層沉積... 原子層沉積法製備奈米鉑觸媒與新穎載體應用於燃料電池 (Fabrication of Platinum Catalyst and Novel Supports by Atomic Layer Deposition for Fuel Cell Application) | NTHU NDLTD | 博 | 7.50 |
原子層沉積(Atomic layer deposition)、鉑觸媒(Platinum catalyst)、燃料電池(Fuel cell) 原子層沉積... | ||||
107 | 利用原子沉... 利用原子沉積及化學法製備光觸媒及其應用於光催降解與光催產氫之研究 (Fabrication of Photocatalysts by Atomic Layer Deposition and Chemical Methods for Photocatalytic Degradation and Hydrogen Evolution) | NTHU NDLTD | 博 | 6.19 |
光觸媒(Photocatalyst)、原子沉積法(ALD)、五氧化二鉭(Ta2O5)、石墨相氮化碳(g-C3N4) 光觸媒(P... | ||||
107 | 碳化鉭和氮... 碳化鉭和氮化釩及其複合物作為質子交換膜燃料電池觸媒載體之製備及其性能研究 (Fabrication of TaC, VN, and VN/TaC and Their Application as Catalyst Support in Proton Exchange Membrane Fuel Cell) | NTHU NDLTD | 碩 | 2.19 |
碳化鉭(tantalum carbide)、氮化釩(vanadium nitride)、白金奈米顆粒(Pt nanoparticle)、化學還原法(chemical reduction method)、原子層沉積(atomic layer deposition)、質子交換膜燃料電池(proton exchange membrane fuel cell) 碳化鉭(t... | ||||
107 | 氧化鎢/石... 氧化鎢/石墨相氮化碳異質結構及助催化劑於光催化水解產氫之研究 (Fabrication of WO3/g-C3N4 Z-scheme Structure and Co-catalysts for Photocatalytic Hydrogen Evolution) | NTHU NDLTD | 碩 | 2.18 |
光催化產氫(photocatalytic hydrogen evolution)、Z-scheme異質結構(Z-scheme structure)、石墨相氮化碳(graphitic carbon nitride)、氧化鎢(tungsten oxide)、助催化劑(Co-catalysts)、水解產氫(water splitting) 光催化產氫... | ||||
106 | 磷酸銀-二... 磷酸銀-二氧化鈦異質結構光觸媒之製備及其應用於光催化產氫 (Fabrication of Ag3PO4-TiO2 Heterojunction Photocatalyst for Photocatalytic Hydrogen Generation) | NTHU NDLTD | 碩 | 2.00 |
二氧化鈦(titanium dioxide)、磷酸銀(silver phosphate)、異質結構(heterojunction)、光催化劑(photocatalyst)、水解(water splitting)、原子層沉積法(atomic layer deposition)、產氫(hydrogen generation)、能帶位置(band position)、費米能階(Fermi level) 二氧化鈦(... | ||||
106 | 以氮化鋯及... 以氮化鋯及氮化鈮為質子交換膜燃料電池觸媒載體之製備及其性能研究 (Fabrication of ZrN and NbN as Catalyst Support and Their Application in Proton Exchange Membrane Fuel Cell) | NTHU NDLTD | 碩 | 5.41 |
氮化鋯(zirconium nitride)、氮化鈮(niobium nitride)、白金觸媒(Pt catalyst)、質子交換膜燃料電池(proton exchange membrane fuel cell) 氮化鋯(z... | ||||
106 | 氮化鉭-氧... 氮化鉭-氧化鋅異質結構應用於催化產氫之研究 (Fabrication of Tantalum Nitride - Zinc Oxide Heterojunction Photocatalysts for Hydrogen Generation) | NTHU NDLTD | 碩 | 2.25 |
原子層沉積(Atomic Layer Deposition)、氧化鋅(Zinc Oxide)、氮化鉭(Tantalum Nitride)、光觸媒(Photocatalysts)、異質結構(Heterojunction)、氫能(Z-scheme)、水解產氫(Hydrogen Energy) 原子層沉積... | ||||
106 | 質子交換膜... 質子交換膜燃料電池高導電氮化鈦微孔結構觸媒載體之製備及其性能研究 (Fabrication of Mesoporous Titanium Nitride Structure as High-performance Catalyst Support for Proton Exchange Membrane Fuel Cell) | NTHU NDLTD | 碩 | 2.14 |
氮化鈦(titanium nitride)、分散劑(sol-gel method)、P-123(phase separation)、CTAB(surfactant)、PMMA(P-123)、PEG(CTAB)、溶膠-凝膠法(PMMA)、相分離(PEG)、多孔結構(mesoporous structure)、鉑觸媒(Platinum)、化學還原法(chemical reduction method)、硼氫化鈉(sodium borohydride)、質子交換膜燃料電池(proton exchange membrane fuel cell) 氮化鈦(t... | ||||
105 | 以無模板方... 以無模板方式製備微孔結構氮氧化鉭及其光催化之應用 (Template-Free Synthesis of Mesoporous Tantalum (Oxy)nitrides and Their Applications in Photocatalysis) | NTHU NDLTD | 碩 | 無口試日期 |
微孔結構(Mesoporous)、氮化鉭(Ta3N5)、氮氧化鉭(TaON)、鉭酸鋅(ZnTa2O6)、產氫(Hydrogen Generation) 微孔結構(... | ||||
105 | 犧牲試劑及... 犧牲試劑及氮化鉭-氧化鎢的光致產氫性能 (Photo-induced Hydrogen Evolution Properties of Sacrificial Reagents and Ta3N5/WO3) | NTHU NDLTD | 碩(外籍生) | 2.00 |
光觸媒(photocatalytic water splitting)、犧牲試劑(sacrificial reagent)、光致產氫(hydrogen evolution)、氮化鉭(tantalum nitride)、氧化鎢(tungsten oxide) 光觸媒(p... | ||||
105 | 以電漿輔助... 以電漿輔助原子層沉積技術製備氮化銅奈米晶體電極觸媒應用為燃料電池氧還原反應 (Fabrication of Copper Nitride Nanocrystals by Plasma-Enhanced Atomic Layer Deposition as Electrocatalyst for Enhanced Oxygen Reduction Reaction in Fuel Cells) | NTHU NDLTD | 碩 | 1.70 |
氮化銅(copper nitride)、電漿輔助原子層沉積(plasma-enhanced atomic layer deposition)、氧還原反應(oxygen reduction reaction)、電極觸媒(electrocatalyst)、燃料電池(fuel cells) 氮化銅(c... | ||||
103 | 以原子層沉... 以原子層沉積法製備奈米鉑於氮化鈦微孔結構應用於質子交換膜燃料電池之研究 (Fabrication of Platinum Nanoparticles on Titanium Nitride Macro/mesoporous Structure by Atomic Layer Deposition for Proton Exchange Membrane Fuel Cell) | NTHU NDLTD | 碩 | 無口試日期 |
氮化鈦(Titanium nitride)、溶膠-凝膠法(Sol-gel method)、相分離(Phase separation)、微孔結構(Macro-mesoporous structure)、鉑觸媒(Platinum)、原子層沉積技術(Atomic layer deposition)、質子交換膜燃料電池(Proton exchange membrane fuel cell) 氮化鈦(T... | ||||
103 | 氮化鉭-氧... 氮化鉭-氧化鎢異質薄膜之製備及其光催化之應用 (Fabrication of Ta3N5 - WO3 heterojunction photocatalysts for photocatalytic hydrogen evolution and dye degradation) | NTHU NDLTD | 碩 | 無口試日期 |
原子層沉積(ALD)、溶膠凝膠法(sol-gel)、光催化水解產氫(photocatalytic water splitting) 原子層沉積... | ||||
102 | 以原子層沉... 以原子層沉積法製備奈米鉑觸媒於氮化鈦反蛋白石結構應用於質子交換膜燃料電池之研究 (Fabrication of Pt Catalyst on TiN Inverse Opal Structure for Proton Exchange Membrane Fuel Cell by Atomic Layer Deposition) | NTHU NDLTD | 碩 | 無口試日期 |
原子層沉積技術(atomic layer deposition)、氮化鈦(titanium nitride)、反蛋白石結構(inverse opal structure)、鉑觸媒(Pt catalyst)、質子交換膜燃料電池(proton exchange membrane fuel cell) 原子層沉積... |