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金/硒化锡纳米异质结构的增强场发射特性:实验与理论相结合的研究

Enhanced Field Emission Properties of Au/SnSe Nano-heterostructure: A Combined Experimental and Theoretical Investigation.

作者信息

Rondiya Sachin R, Jadhav Chandradip D, Chavan Padmakar G, Dzade Nelson Y

机构信息

The School of Chemistry, Cardiff University, Cardiff, CF10 3AT, Wales, UK.

Department of Physics, School of Physical Sciences, Kavayitri Bahinabai Chaudhari North Maharashtra University, Jalgaon, 425001, India.

出版信息

Sci Rep. 2020 Feb 11;10(1):2358. doi: 10.1038/s41598-020-58840-8.

Abstract

We report the field emission properties of two-dimensional SnSe nanosheets (NSs) and Au/SnSe nano-heterostructure (NHS) prepared by a simple and economical route of one-pot colloidal and sputtering technique. Field Emission Scanning Electron Microscope (FESEM) analysis reveal surface protrusions and morphology modification of the SnSe NSs by Au deposition. By decorating the SnSe NSs with Au nanoparticles, significant improvement in field emission characteristics were observed. A significant reduction in the turn-on field from 2.25 V/µm for the SnSe NSs to 1.25 V/µm for the Au/SnSe NHS was observed. Emission current density of 300 µA/cm has been achieved at an applied field of 4.00 and 1.91 V/µm for SnSe NSs and Au/SnSe NHS, respectively. Analysis of the emission current as a function of time also demonstrated the robustness of the present Au/SnSe NHS. Consistent with the experimental data, our complementary first-principles DFT calculations predict lower work function for the Au/SnSe NHS compared to the SnSe NSs as the primary origin for improved field emission. The present study has evidently provided a rational heterostructure strategy for improving various field emission related applications via surface and electronic modifications of the nanostructures.

摘要

我们报道了通过一锅胶体和溅射技术这种简单且经济的方法制备的二维SnSe纳米片(NSs)和Au/SnSe纳米异质结构(NHS)的场发射特性。场发射扫描电子显微镜(FESEM)分析揭示了通过Au沉积对SnSe NSs的表面突起和形态修饰。通过用Au纳米颗粒装饰SnSe NSs,观察到场发射特性有显著改善。观察到开启场从SnSe NSs的2.25 V/μm显著降低到Au/SnSe NHS的1.25 V/μm。在施加场为4.00 V/μm和1.91 V/μm时,SnSe NSs和Au/SnSe NHS分别实现了300 μA/cm²的发射电流密度。发射电流随时间变化的分析也证明了当前Au/SnSe NHS的稳健性。与实验数据一致,我们互补的第一性原理DFT计算预测,与SnSe NSs相比,Au/SnSe NHS的功函数更低,这是场发射改善的主要原因。本研究显然通过对纳米结构进行表面和电子修饰,为改善各种与场发射相关的应用提供了一种合理的异质结构策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8570/7012864/3176691f768f/41598_2020_58840_Fig1_HTML.jpg

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