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在碳纳米管内选择性激光辅助合成具有载流子光生特性的单层PbI管状范德华异质结构。

Selective Laser-Assisted Synthesis of Tubular van der Waals Heterostructures of Single-Layered PbI within Carbon Nanotubes Exhibiting Carrier Photogeneration.

作者信息

Sandoval Stefania, Kepić Dejan, Pérez Del Pino Ángel, György Enikö, Gómez Andrés, Pfannmoeller Martin, Tendeloo Gustaaf Van, Ballesteros Belén, Tobias Gerard

机构信息

Institut de Ciència de Materials de Barcelona (ICMAB-CSIC) , Campus UAB , Bellaterra, 08193 Barcelona , Spain.

Vinča Institute of Nuclear Sciences , University of Belgrade , P.O. Box 522, 11001 Belgrade , Serbia.

出版信息

ACS Nano. 2018 Jul 24;12(7):6648-6656. doi: 10.1021/acsnano.8b01638. Epub 2018 Jul 10.

Abstract

The electronic and optical properties of two-dimensional layered materials allow the miniaturization of nanoelectronic and optoelectronic devices in a competitive manner. Even larger opportunities arise when two or more layers of different materials are combined. Here, we report on an ultrafast energy efficient strategy, using laser irradiation, which allows bulk synthesis of crystalline single-layered lead iodide in the cavities of carbon nanotubes by forming cylindrical van der Waals heterostructures. In contrast to the filling of van der Waals solids into carbon nanotubes by conventional thermal annealing, which favors the formation of inorganic nanowires, the present strategy is highly selective toward the growth of monolayers forming lead iodide nanotubes. The irradiated bulk material bearing the nanotubes reveals a decrease of the resistivity as well as a significant increase in the current flow upon illumination. Both effects are attributed to the presence of single-walled lead iodide nanotubes in the cavities of carbon nanotubes, which dominate the properties of the whole matrix. The present study brings in a simple, ultrafast and energy efficient strategy for the tailored synthesis of rolled-up single-layers of lead iodide (i.e., single-walled PbI nanotubes), which we believe could be expanded to other two-dimensional (2D) van der Waals solids. In fact, initial tests with ZnI already reveal the formation of single-walled ZnI nanotubes, thus proving the versatility of the approach.

摘要

二维层状材料的电子和光学特性使得纳米电子和光电器件能够以具有竞争力的方式实现小型化。当将两层或更多层不同材料组合在一起时,会出现更大的机遇。在此,我们报告一种超快且节能的策略,即利用激光辐照,通过形成圆柱形范德华异质结构,在碳纳米管的空腔中批量合成结晶单层碘化铅。与通过传统热退火将范德华固体填充到碳纳米管中(这种方法有利于无机纳米线的形成)不同,本策略对形成碘化铅纳米管的单层生长具有高度选择性。带有纳米管的辐照块状材料在光照下显示出电阻率降低以及电流显著增加。这两种效应都归因于碳纳米管空腔中存在单壁碘化铅纳米管,它们主导了整个基体的性能。本研究带来了一种简单、超快且节能的策略,用于定制合成卷曲的单层碘化铅(即单壁PbI纳米管),我们认为该策略可扩展到其他二维(2D)范德华固体。事实上,对ZnI的初步测试已经揭示了单壁ZnI纳米管的形成,从而证明了该方法的通用性。

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