论文标题
阐明用于多功能应用的二维H-BN纳米片的室温增长
Unravelling the room temperature growth of two-dimensional h-BN nanosheets for multifunctional applications
论文作者
论文摘要
二维范德华(2D-VDW)材料的室温生长对于最先进的纳米技术是必不可少的。低温生长取代了升高生长温度的需求,并伴有高热预算。此外,对于电子应用,低或室温的生长降低了固有的膜 - 基底界面界面热扩散相关的功能性能和随之而来的设备性能的可能性。在这里,我们通过使用脉冲激光沉积(PLD)工艺证明了在室温下超级伴随氮化硼(BN)的生长,并证明了潜在应用的各种功能。综合化学,光谱和微观特征证实了有序的纳米片状六角形BN的生长。在功能上,纳米片显示疏水性,高润滑性(摩擦系数低),可见到近红外波长范围内的低折射率以及室温单光子量子排放。我们的工作揭示了一个重要的步骤,它为室温带来了大量的应用H-BN纳米片的应用,因为它在任何给定的底物上都是可行的,因此在节俭的热预算下为H-BN的需求创造了一种情况。
Room temperature growth of two-dimensional van der Waals (2D-vdW) materials is indispensable for state-of-the-art nanotechnology. The low temperature growth supersedes the requirement of elevated growth temperature accompanied with high thermal budgets. Moreover, for electronic applications, low or room temperature growth reduces the possibility of intrinsic film-substrate interfacial thermal diffusion related deterioration of functional properties and consequent device performance. Here, we demonstrated the growth of ultrawide-bandgap boron nitride (BN) at room temperature by using the pulsed laser deposition (PLD) process and demonstrated various functionalities for potential applications. Comprehensive chemical, spectroscopic and microscopic characterization confirms the growth of ordered nanosheet-like hexagonal BN. Functionally, nanosheets show hydrophobicity, high lubricity (low coefficient of friction), low refractive index within the visible to near-infrared wavelength range, and room temperature single-photon quantum emission. Our work unveils an important step that brings a plethora of applications potential for room temperature grown h-BN nanosheets as it can be feasible on any given substrate, thus creating a scenario for h-BN on demand at frugal thermal budget.