1.
Electronic structure of the Si-containing topological Dirac semime..
[2497]
|
2.
Observing the Electrochemical Oxidation of Co Metal at the Solid/L..
[2345]
|
3.
Photoemission study of the electronic structure of valence band co..
[2340]
|
4.
Quantum spin Hall state in monolayer 1T '-WTe2
[2141]
|
5.
Characterizing ancient materials
[1666]
|
6.
Design of a Hybrid Split-Delay Line for Hard X-ray Free-Electron L..
[1642]
|
7.
Tuning the activities of cuprous oxide nanostructures via the oxid..
[1564]
|
8.
An Electrochemical, Microtopographical and Ambient Pressure X-Ray ..
[1507]
|
9.
Unravelling the electrochemical double layer by direct probing of ..
[1499]
|
10.
Tuning phase transitions in FeSe thin flakes by field-effect trans..
[1443]
|
11.
Realization of wafer-scale nanogratings with sub-50 nm period thro..
[1408]
|
12.
Upgrade of transmission XAFS data acquisition system upgrade of Sh..
[1380]
|
13.
Formation and Activity Enhancement of Surface Hydrides by the Meta..
[1358]
|
14.
Structure, Magnetism, and the Interaction of Water with Ti-Doped F..
[1354]
|
15.
Strong Interface Enhanced Hydrogen Evolution over Molybdenum-Based..
[1346]
|
16.
Kirkpatrick-Baez mirrors commissioning for coherent scattering and..
[1257]
|
17.
An APXPS endstation for gas-solid and liquid-solid interface studi..
[1232]
|
18.
Ultralow Pt Catalyst for Formaldehyde Removal: The Determinant Rol..
[1228]
|
19.
First commissioning results of the coherent scattering and imaging..
[1228]
|
20.
Control of the surface atomic population of Rh0.5Pd0.5 bimetallic ..
[1221]
|
21.
Role of Manganese Oxide in Syngas Conversion to Light Olefins
[1152]
|
22.
Direct observation of the energetics at a semiconductor/liquid jun..
[1152]
|
23.
Enhanced Nickel-Catalyzed Methanation Confined under Hexagonal Bor..
[1092]
|
24.
In-situ APXPS and STM Study of the Activation of H-2 on ZnO(10(1)o..
[1087]
|
25.
Electron-plasmon interaction induced plasmonic-polaron band replic..
[1076]
|
26.
Surface Plasmon Enabling Nitrogen Fixation in Pure Water through a..
[1068]
|
27.
Operando Analyses of Solar Fuels Light Absorbers and Catalysts
[1057]
|
28.
Visualizing the Anomalous Catalysis in Two-Dimensional Confined Sp..
[1057]
|
29.
Electrochemically modified graphite for fast preparation of large-..
[1054]
|
30.
Cooperative Catalysis of Nickel and Nickel Oxide for Efficient Red..
[1048]
|
31.
Electrochemical Cutting in Weak Aqueous Electrolytes: The Strategy..
[1039]
|
32.
Anode coverage for enhanced electrochemical oxidation: a green and..
[1026]
|
33.
Kinetically Enhanced Bubble-Exfoliation of Graphite toward High-Yi..
[1001]
|
34.
Origin of interfacial conductivity at complex oxide heterointerfac..
[993]
|
35.
The Birth of Nickel Phosphide Catalysts: Monitoring Phosphorus Ins..
[965]
|
36.
In situ study of the electronic structure of atomic layer deposite..
[961]
|
37.
Using "Tender" X-ray Ambient Pressure X-Ray Photoelectron Spectros..
[959]
|
38.
硬X射线自由电子激光分束延迟光学系统
[956]
|
39.
Self-Assembly of Thiourea-Crosslinked Graphene Oxide Framework Mem..
[925]
|
40.
Surface Amorphous Oxides Induced Electron Transfer into Complex Ox..
[925]
|
41.
In Situ Characterization of Catalysis and Electrocatalysis Using A..
[924]
|
42.
基于中能X射线的电催化基础研究:用于电化学体系中液/固和气/固界面原位..
[917]
|
43.
Electronic structure and spatial inhomogeneity of iron-based super..
[903]
|
44.
Exploiting Two-Dimensional Bi2O2Se for Trace Oxygen Detection
[897]
|
45.
Steering the reaction pathway of syngas-to-light olefins with coor..
[894]
|
46.
A Reconstructed Cu2P2O7 Catalyst for Selective CO2 Electroreductio..
[889]
|
47.
In situ observation of H-2 dissociation on the ZnO (0001) surface ..
[881]
|
48.
A rechargeable all-solid-state sodium peroxide (Na2O2) battery wit..
[879]
|
49.
Measurement of the energy-band relations of stabilized Si photoano..
[876]
|
50.
Three-dimensional ultrastructural imaging reveals the nanoscale ar..
[873]
|
51.
上海光源BL14W1线站透射XAFS数据采集系统升级
[870]
|
52.
Transition edge sensor-based detector: from X-ray to γ -ray
[852]
|
53.
Electronic structure of monolayer 1T'-MoTe2 grown by molecular bea..
[847]
|
54.
Investigation of the Si/TiO<inf>2</inf>/electrolyte in..
[844]
|
55.
Vapor-liquid-solid growth of large-area multilayer hexagonal boron..
[839]
|
56.
一种高稳定性二维姿态调整机构
[836]
|
57.
CO2 Activation on Ni(111) and Ni(100) Surfaces in the Presence of ..
[832]
|
58.
Operando Ambient Pressure X-ray Photoelectron Spectroscopy Studies..
[828]
|
59.
Could Irradiation Introduce Oxidized Oxygen Signals in Resonant In..
[821]
|
60.
Shanghai Soft X-Ray Free-Electron Laser Facility
[820]
|
61.
CO2 Activation on Cobalt Surface in the Presence of H2O: An Ambien..
[812]
|
62.
Charge Distribution on S and Intercluster Bond Evolution in Mo6S8 ..
[812]
|
63.
Nature of Active Sites on Cu-CeO2 Catalysts Activated by High-Temp..
[811]
|
64.
Photoelectrochemical performance enhancement of low-energy Ar+ irr..
[810]
|
65.
Stabilizing the Meniscus for Operando Characterization of Platinum..
[808]
|
66.
Silicon-assisted growth of hexagonal boron nitride to improve oxid..
[805]
|
67.
高分辨离子三维速度成像装置及不同离子动量系数重整方法
[796]
|
68.
一种角度振动控制系统
[793]
|
69.
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
[783]
|
70.
Liquid/Solid Interfaces Studied by Ambient Pressure HAXPES
[779]
|
71.
一种反射镜冷却系统
[774]
|
72.
"Pop-On and Pop-Off" Surface Chemistry of Alanine on Ni{111} under..
[767]
|
73.
Interfacial Enhancement by gamma-Al2O3 of Electrochemical Oxidativ..
[765]
|
74.
Probing the surface of platinum during the hydrogen evolution reac..
[745]
|
75.
X-ray spectroscopy of energy materials under in situ/operando cond..
[738]
|
76.
一种超导转变边探测器及其制备方法
[738]
|
77.
Direct Mapping of Band Positions in Doped and Undoped Hematite dur..
[737]
|
78.
Formation of Different Rh-O Species on Rh(110) and Their Reaction ..
[730]
|
79.
In Situ Electronic Structure Study of Epitaxial Niobium Thin Films..
[722]
|
80.
Development of basic theory and application of cryogenic X-ray spe..
[716]
|
81.
光刻板清洗装置
[714]
|
82.
Influence of Step Geometry on the Reconstruction of Stepped Platin..
[706]
|
83.
Recent Progress on Synchrotron-Based In-Situ Soft X-ray Spectrosco..
[698]
|
84.
Data Acquisition and Analysis for a TES-Based X-Ray Spectrometer
[697]
|
85.
Light-Induced Surface Reactions at the Bismuth Vanadate/Potassium ..
[694]
|
86.
Disorder in Aqueous Solutions and Peak Broadening in X-ray Photoel..
[693]
|
87.
In situ Dispersed Nano-Au on Zr-Suboxides as Active Cathode for Di..
[690]
|
88.
Dynamic chemical processes on ZnO surfaces tuned by physisorption ..
[687]
|
89.
Mechanistic Studies of Water Electrolysis and Hydrogen Electro-Oxi..
[682]
|
90.
Operando Study of Ceria Based Solid Oxide Electrochemical Cells
[681]
|
91.
Heterogeneous Synergetic Effect of Metal-Oxide Interfaces for Effi..
[680]
|
92.
Degradation of Nickel-Rich layered oxides in ambient air and its i..
[659]
|
93.
适于低频振动的角度偏差补偿系统、方法、设备及介质
[655]
|
94.
Study on data processing for X-ray spectrometer based on microcalo..
[647]
|
95.
Formation of multifaceted nano-groove structure on rutile TiO2 pho..
[640]
|
96.
Elucidating the alkaline oxygen evolution reaction mechanism on pl..
[636]
|
97.
TES based X-ray spectrometer developed for SHINE Project
[634]
|
98.
Understanding solid/liquid electrified interfaces using ambient pr..
[633]
|
99.
In operando x-ray photoelectron spectroscopy studies of H2 oxidati..
[627]
|
100.
Surface Orientation and Pressure Dependence of CO2 Activation on C..
[624]
|