53 |
110-1
|
期刊論文
|
董崇禮
教授
|
5f covalency synergistically boosting oxygen evolution of UCoO4 catalyst
|
52 |
109-1
|
期刊論文
|
董崇禮
教授
|
Elucidation of the synergistic effect of dopants and vacancies on promoted selectivity for CO2 electroreduction to Formate
|
51 |
109-2
|
期刊論文
|
董崇禮
教授
|
Fe2+-induced in situ intercalation and cation exsolution of Co80Fe20(OH)(OCH3) with rich vacancies for boosting oxygen evolution reaction
|
50 |
110-2
|
期刊論文
|
董崇禮
教授
|
Integrated Catalytic Sites for Highly Efficient Electrochemical Oxidation of the Aldehyde and Hydroxyl Groups in 5-Hydroxymethylfurfural
|
49 |
113-1
|
期刊論文
|
董崇禮
教授
|
Selenic acid etching assisted atomic engineering for designing metal-semimetal dual single-atom catalysts for enhanced CO2 electroreduction
|
48 |
113-1
|
期刊論文
|
董崇禮
教授
|
High-entropy layered oxide cathode materials with moderated interlayer spacing and enhanced kinetics for sodium-ion batteries
|
47 |
111-2
|
期刊論文
|
莊程豪
教授
|
On the Operando Structure of Ruthenium Oxides during the Oxygen Evolution Reaction in Acidic Media
|
46 |
110-1
|
期刊論文
|
莊程豪
教授
|
Molten salt assisted fabrication of Fe@FeSA-N-C oxygen electrocatalyst for high performance Zn-air battery
|
45 |
109-2
|
期刊論文
|
莊程豪
教授
|
Ultrasensitive NO2 Gas Sensors Based on Layered α-MoO3 Nanoribbons
|
44 |
113-1
|
期刊論文
|
吳俊毅
副教授
|
Distributing circuits over heterogeneous, modular quantum computing network architectures
|
43 |
112-2
|
期刊論文
|
吳俊毅
副教授
|
Fidelity and Entanglement of Random Bipartite Pure States: Insights and Applications
|
42 |
113-1
|
期刊論文
|
莊程豪
教授
|
Atomic Insights into the Competitive Edge of Nanosheets Splitting Water
|
41 |
112-2
|
期刊論文
|
莊程豪
教授
|
DNA-Anchored Single-Molecule Iron Phthalocyanine As an Efficient Electrocatalyst for Alkaline Fuel Cells
|
40 |
113-1
|
期刊論文
|
莊程豪
教授
|
Formation of highly stable interfacial nitrogen gas hydrate overlayers under ambient conditions
|
39 |
113-1
|
期刊論文
|
莊程豪
教授
|
Out-of-plane coordination of iridium single atoms with organic molecules and cobalt–iron hydroxides to boost oxygen evolution reaction
|
38 |
109-1
|
期刊論文
|
莊程豪
教授
|
A comparative study of electrochemical cells for in situ x-ray spectroscopies in the soft and tender x-ray range
|
37 |
110-1
|
期刊論文
|
莊程豪
教授
|
Crystallographic-Site-Specific Structural Engineering Enables Extraordinary Electrochemical Performance of High-Voltage LiNi0.5Mn1.5O4 Spinel Cathodes for Lithium-Ion Batteries
|
36 |
112-2
|
期刊論文
|
莊程豪
教授
|
In Situ Reconstruction to Surface Sulfide Adsorbed Metal Scaffold for Enhanced Electrocatalytic Hydrogen Evolution Activity
|
35 |
110-1
|
期刊論文
|
莊程豪
教授
|
Surface Electron-Hole Rich Species Active in the Electrocatalytic Water Oxidation
|
34 |
110-2
|
期刊論文
|
莊程豪
教授
|
Modulating the electronic structure of zinc single atom catalyst by P/N coordination and Co2P supports for efficient oxygen reduction in Zn-Air battery
|
33 |
113-1
|
期刊論文
|
薛宏中
教授
|
The growing charge-density-wave order in CuTe lightens and speeds up electrons
|
32 |
111-2
|
期刊論文
|
莊程豪
教授
|
Ferromagnetic single-atom spin catalyst for boosting water splitting
|
31 |
112-2
|
期刊論文
|
薛宏中
教授
|
Three-dimensional ultrafast charge-density-wave dynamics in CuTe
|
30 |
112-2
|
期刊論文
|
董崇禮
教授
|
Enhancement in supercapacitive performance of calcium phosphate nanoneedles through Ni-ion incorporation: insights into atomic and electronic structures
|
29 |
112-1
|
期刊論文
|
董崇禮
教授
|
Vacancy optimized coordination on nickel oxide for selective electrocatalytic oxidation of glycerol
|
28 |
113-2
|
教學研習
|
李明憲
教授
|
全英語授課的挑戰與成效—教師視角與學生反饋(2025-05-23 12:10:00 ~ 14:00:00)
|
27 |
112-2
|
期刊論文
|
董崇禮
教授
|
Coupling photocatalytic CO2 reduction and CH3OH oxidation for selective dimethoxymethane production
|
26 |
113-2
|
教學研習
|
薛宏中
教授
|
(課程代號:ODF-01) LibreOffice 免費文書軟體辦公室應用線上課程(2025-06-13 16:00:00 ~ 2025-09-09 23:59:00)
|
25 |
112-2
|
期刊論文
|
董崇禮
教授
|
Improving electrochromic properties of V2O5 smart film through Ti incorporation: local atomic and electronic perspectives
|
24 |
113-1
|
期刊論文
|
莊程豪
教授
|
Operando X-ray and Mass Spectroscopy of Reduced Graphene Oxide (rGO)-Mediated Cobalt Catalysts for Boosting the Hydrogen Evolution Reaction
|