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接触电导决定导电金属氧化物纳米晶体薄膜的金属性。

Contact Conductance Governs Metallicity in Conducting Metal Oxide Nanocrystal Films.

作者信息

Staller Corey M, Gibbs Stephen L, Gan Xing Yee, Bender Jay T, Jarvis Karalee, Ong Gary K, Milliron Delia J

机构信息

McKetta Department of Chemical Engineering, University of Texas at Austin, Austin, Texas 78712, United States.

Texas Materials Institute, University of Texas at Austin, Austin, Texas 78712, United States.

出版信息

Nano Lett. 2022 Jun 22;22(12):5009-5014. doi: 10.1021/acs.nanolett.2c01852. Epub 2022 May 31.

Abstract

Although colloidal nanoparticles hold promise for fabricating electronic components, the properties of nanoparticle-derived materials can be unpredictable. Materials made from metallic nanocrystals exhibit a variety of transport behavior ranging from insulators, with internanocrystal contacts acting as electron transport bottlenecks, to conventional metals, where phonon scattering limits electron mobility. The insulator-metal transition (IMT) in nanocrystal films is thought to be determined by contact conductance. Meanwhile, criteria are lacking to predict the characteristic transport behavior of metallic nanocrystal films beyond this threshold. Using a library of transparent conducting tin-doped indium oxide nanocrystal films with varied electron concentration, size, and contact area, we assess the IMT as it depends on contact conductance and show how contact conductance is also key to predicting the temperature-dependence of conductivity in metallic films. The results establish a phase diagram for electron transport behavior that can guide the creation of metallic conducting materials from nanocrystal building blocks.

摘要

尽管胶体纳米颗粒在制造电子元件方面具有潜力,但纳米颗粒衍生材料的性能可能难以预测。由金属纳米晶体制成的材料表现出多种传输行为,从绝缘体(纳米晶体间的接触充当电子传输瓶颈)到传统金属(其中声子散射限制电子迁移率)。纳米晶体薄膜中的绝缘体 - 金属转变(IMT)被认为由接触电导决定。与此同时,缺乏预测超过此阈值的金属纳米晶体薄膜特征传输行为的标准。通过使用具有不同电子浓度、尺寸和接触面积的透明导电掺锡氧化铟纳米晶体薄膜库,我们评估了取决于接触电导的IMT,并展示了接触电导如何也是预测金属薄膜电导率温度依赖性的关键。这些结果建立了一个电子传输行为相图,可指导由纳米晶体构建块制造金属导电材料。

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