1.
Unexpectedly High Salt Accumulation inside Carbon Nanotubes Soaked..
[971]
|
2.
Insights into the adsorption/desorption of CO2 and CO on single-at..
[892]
|
3.
Computational insights into the strain effect on the electrocataly..
[827]
|
4.
Silicon-assisted growth of hexagonal boron nitride to improve oxid..
[788]
|
5.
金属载体相互作用对CeO_2纳米棒热稳定性影响的初步研究
[755]
|
6.
Disorder in Aqueous Solutions and Peak Broadening in X-ray Photoel..
[682]
|
7.
Mechanism for One-Pot Synthesis of 0D-2D Carbon Materials in the B..
[630]
|
8.
Combining electrolysis with thermocatalysis for dry reforming of m..
[602]
|
9.
Programming Hydrogels with Complex Transient Behaviors via Autocat..
[582]
|
10.
Identifying the key steps determining the selectivity of toluene m..
[580]
|
11.
Modeling the effect of surface CO coverage on the electrocatalytic..
[553]
|
12.
Impact of -C2H5 and -OH Functionalizations on the Water Flow Block..
[487]
|
13.
Origin of the Liquid/Gaseous Water Binding Energy Splitting Measur..
[435]
|
14.
Two-dimensional crystalline platinum oxide
[420]
|
15.
Topological Structure Realized in Cove-Edged Graphene Nanoribbons ..
[401]
|
16.
Tunable activity of electrocatalytic CO dimerization on strained C..
[360]
|
17.
Direct observation of hydration of a Nafion membrane using APXPS a..
[347]
|
18.
金属载体相互作用对CeO2纳米棒热稳定性影响的初步研究
[320]
|
19.
Selective oxidative coupling of methane via surface-confined methy..
[312]
|
20.
Promotional Role of a Cation Intermediate Complex in C-2 Formation..
[311]
|
21.
Molten multi-phase catalytic system comprising Li-Zn alloy and LiC..
[299]
|
22.
The axial ligands optimized activity of CO2 electroreduction to CO..
[298]
|
23.
Modelling the activity trend of the hydrogen oxidation reaction un..
[288]
|
24.
Dehydroxylation of Glycerol on Pt Surfaces: An ab initio Molecular..
[278]
|
25.
Hydrated cation-π interactions of π-electrons with hydrated Li+,..
[265]
|
26.
Kinetic Monte Carlo Simulations Coupling the Isomerization and Dif..
[263]
|
27.
Cu表面应变效应调控电催化CO二聚反应活性的第一性原理分子动力学模拟(..
[260]
|
28.
Microenvironment of the HMOR catalyst leads to high ethylene selec..
[248]
|
29.
Preparation of the LiGa Intermetallic Alloy by Electrochemical or ..
[248]
|
30.
基于计算模拟的“气体溶解平衡”的拓展教学
[240]
|
31.
Electrocatalytic oxidation of ammonia on Pt: Mechanistic insights ..
[238]
|
32.
铂表面甘油脱除羟基的从头算分子动力学研究(英文)
[238]
|
33.
Mechanism and Active Species in NH3 Dehydrogenation under an Elect..
[231]
|
34.
计算化学在基础教育的创新应用——以“金属与盐溶液置换反应”的拓展教..
[170]
|
35.
建模技术支持高品质化学课件的制作:渲染、动画和立体结构演示
[153]
|
36.
Discovery of ketene/acetyl as a potential receptor for hydrogen-tr..
[91]
|
37.
Methane Decomposition Enabled by Molten Alkali Chloride Electrolys..
[63]
|