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环境条件下短脉冲激光合成过渡金属二硫属化物纳米结构

Short Pulse Laser Synthesis of Transition-Metal Dichalcogenide Nanostructures under Ambient Conditions.

作者信息

Savva Kyriaki, Višić Bojana, Popovitz-Biro Ronit, Stratakis Emmanuel, Tenne Reshef

机构信息

Institute of Electronic Structure and Laser Foundation for Research and Technology - Hellas, Heraklion, 71110 Crete, Greece.

Physics Department, University of Crete, Heraklion, 71004 Crete, Greece.

出版信息

ACS Omega. 2017 Jun 14;2(6):2649-2656. doi: 10.1021/acsomega.7b00409. eCollection 2017 Jun 30.

Abstract

The study of inorganic nanometer-scale materials with hollow closed-cage structures, such as inorganic fullerene-like (IF) nanostructures and inorganic nanotubes (INTs), is a rapidly growing field. Numerous kinds of IF nanostructures and INTs were synthesized for a variety of applications, particularly for lubrication, functional coatings, and reinforcement of polymer matrices. To date, such nanostructures have been synthesized mostly by heating a transition metal or oxide thereof in the presence of precursor gases, which are however toxic and hazardous. In this context, one frontier of research in this field is the development of new avenues for the green synthesis of IF structures and INTs, directly from the bulk of layered compounds. In the present work, we demonstrate a simple room-temperature and environmentally friendly approach for the synthesis of IF nanostructures and INTs via ultrashort-pulse laser ablation of a mixture of transition-metal dichalcogenides in bulk form mixed with Pb/PbO, in ambient air. The method can be considered as a synergy of photothermally and photochemically induced chemical transformations. The ultrafast-laser-induced excitation of the material, complemented with the formation of extended hot annealing regions in the presence of the metal catalyst, facilitates the formation of different nanostructures. Being fast, easy, and material-independent, our method offers new opportunities for the synthesis of IF nanostructures and INTs from different bulk metal chalcogenide compounds. On the basis of the capabilities of laser technology as well, this method could advantageously be further developed into a versatile tool for the simultaneous growth and patterning of such nanostructures in preselected positions for a variety of applications.

摘要

对具有中空封闭笼状结构的无机纳米级材料的研究,如类无机富勒烯(IF)纳米结构和无机纳米管(INTs),是一个快速发展的领域。人们合成了多种IF纳米结构和INTs用于各种应用,特别是润滑、功能涂层以及聚合物基体的增强。迄今为止,这类纳米结构大多是通过在有毒有害的前驱体气体存在下加热过渡金属或其氧化物来合成的。在这种背景下,该领域的一个研究前沿是开发直接从层状化合物本体绿色合成IF结构和INTs的新途径。在本工作中,我们展示了一种简单的室温且环境友好的方法,通过在环境空气中对块状过渡金属二硫属化物与Pb/PbO的混合物进行超短脉冲激光烧蚀来合成IF纳米结构和INTs。该方法可被视为光热和光化学诱导的化学转变的协同作用。超快激光对材料的激发,再加上在金属催化剂存在下形成扩展的热退火区域,促进了不同纳米结构的形成。我们的方法快速、简便且与材料无关,为从不同的块状金属硫属化物化合物合成IF纳米结构和INTs提供了新机会。基于激光技术的能力,该方法还可有利地进一步发展成为一种通用工具,用于在预选位置同时生长和图案化这类纳米结构以用于各种应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a58/6641615/ef9566913584/ao-2017-00409q_0003.jpg

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