纳米电子学
过渡金属
钝化
催化作用
材料科学
分解水
氢
氧气
纳米技术
理论(学习稳定性)
大气(单位)
化学物理
光电子学
化学
图层(电子)
物理
计算机科学
热力学
有机化学
光催化
机器学习
作者
Silvia Nappini,Danil W. Boukhvalov,Gianluca D’Olimpio,Libo Zhang,B. Ghosh,Chia‐Nung Kuo,Haoshan Zhu,Jia Cheng,M. Nardone,L. Ottaviano,Debashis Mondal,Raju Edla,Jun Fuji,C. S. Lue,I. Vobornik,J. A. Yarmoff,Amit Agarwal,Lin Wang,Lixue Zhang,Federica Bondino
标识
DOI:10.1002/adfm.202000915
摘要
Abstract By means of theory and experiments, the application capability of nickel ditelluride (NiTe 2 ) transition‐metal dichalcogenide in catalysis and nanoelectronics is assessed. The Te surface termination forms a TeO 2 skin in an oxygen environment. In ambient atmosphere, passivation is achieved in less than 30 min with the TeO 2 skin having a thickness of about 7 Å. NiTe 2 shows outstanding tolerance to CO exposure and stability in water environment, with subsequent good performance in both hydrogen and oxygen evolution reactions. NiTe 2 ‐based devices consistently demonstrate superb ambient stability over a timescale as long as one month. Specifically, NiTe 2 has been implemented in a device that exhibits both superior performance and environmental stability at frequencies above 40 GHz, with possible applications as a receiver beyond the cutoff frequency of a nanotransistor.
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