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Carbon- and crack-free growth of hexagonal boron nitride nanosheets and their uncommon stacking order

机译:六方硼碳——并无增长氮化硅nanosheets叠加及其罕见订单

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摘要

The quality of hexagonal boron nitride nanosheets (h-BNNS) is often associated with the most visible aspects such as lateral size and thickness. Less obvious factors such as sheet stacking order could also have a dramatic impact on the properties of BNNS and therefore its applications. The stacking order can be affected by contamination, cracks, and growth temperatures. In view of the significance of chemical-vapour-decomposition (CVD) assisted growth of BNNS, this paper reports on strategies to grow carbonand crack-free BNNS by CVD and describes the stacking order of the resultant BNNS. Pretreatment of the most commonly used precursor, ammonia borane, is necessary to remove carbon contamination caused by residual hydrocarbons. Flattening the Cu and W substrates prior to growth and slow cooling around the Cu melting point effectively facilitate the uniform growth of h-BNNS, as a result of a minimal temperature gradient across the Cu substrate. Confining the growth inside alumina boats effectively minimizes etching of the nanosheet by silica nanoparticles originating from the commonly used quartz reactor tube. h-BNNS grown on solid Cu surfaces using this method adopt AB, ABA, AC', and AC'B stacking orders, which are known to have higher energies than the most stable AA' configuration. These findings identify a pathway for the fabrication of high-quality h-BNNS via CVD and should spur studies on stacking order-dependent properties of h-BNNS.
机译:六角氮化硼nanosheets的质量(h-BNNS)往往是最相关的可见的横向尺寸和等方面厚度。堆垛顺序也可能产生戏剧性的影响在bnn,因此它的属性应用程序。通过污染、裂缝和增长温度。chemical-vapour-decomposition (CVD)协助bnn增长,本文报道策略增长carbonand无bnn CVD和描述了合成的堆叠顺序bnn。前体,氨硼烷,删除是必要的碳污染引起的残余碳氢化合物。在铜之前增长和缓慢冷却熔点有效促进统一h-BNNS增长,最小的结果整个铜衬底的温度梯度。围内生长氧化铝船只有效地减少nanosheet的腐蚀硅纳米颗粒来自常用的石英反应器管。使用这种方法在固体铜表面采用AB,阿坝,交流,交流可能会堆积订单,这是已知能量高于最多稳定的AA的配置。制造高质量的途径h-BNNS通过CVD和应该刺激研究叠加order-dependent h-BNNS的属性。

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