表面能控制二维六方氮化硼单晶的生长

M. Griep, R. Tay, T. Tumlin, G. Mallick, S. H. Tsang, Ram Sevak Singh, E. Teo, S. Karna
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引用次数: 1

摘要

二维(2D)纳米材料,包括石墨烯和氮化硼(BN),由于其特殊的电子、热学和机械性能,近年来引起了人们的强烈兴趣。要使这些新特性发挥最大的潜力,需要对原子层生长过程进行精确的控制。近年来,利用化学气相沉积(CVD)工艺催化生长二维纳米材料已成为一种有吸引力的方法,因为它具有低成本、可扩展性和在各种衬底上转移生长材料的能力。在这种方法中,催化表面的形貌和纯度对二维纳米材料的形状、尺寸和生长动力学起着至关重要的作用。在这项工作中,我们提出了我们系统研究催化表面形貌对CVD生长的六方(h)-BN薄膜的形状和畴大小的作用的结果。目前的工作清楚地表明,表面粗糙度以脊的形式存在导致小域三角形BN片的优先生长。表面粗糙度降低100倍导致BN三角形增加,最终过渡到大域六角形BN片。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface energy controlled growth of single crystalline two-dimensional hexagonal (h)-boron nitride
Two-dimensional (2D) nanomaterials, including graphene and boron nitride (BN), have been of intense interest in recent years due to their exceptional electronic, thermal, and mechanical properties. Tailoring these novel properties to their maximum potential requires precise control of the atomic layer growth process. In recent years, catalytic growth of 2-D nanomaterials using chemical vapor deposition (CVD) process has emerged as an attractive approach due to their low-cost, scalability, and ability to transfer the grown materials on various substrates. In this approach, the morphology and purity of the catalytic surface plays a critical role on the shape, size, and growth kintectics of the 2D nanomaterial. In this work, we present the results of our systematic studies of the role of catalytic surface morphology on the shape and domain size of CVD grown hexagonal (h)-BN films. The present work clearly demonstrates that the presence of surface roghness in the form of ridges leads to a preferential growth of small-domain triangular BN sheets. A 100-fold reduction in the surface roughness leads to increased domain BN triangles, eventually transitioning to large-domain hexagonal shaped BN sheets.
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