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Two-Dimensionally Grown Single- Crystal Silicon Nanosheets with Tunable Visible-Light Emissions

机译:具有可调可见光发射的二维生长的单晶硅纳米片

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摘要

Since the discovery of graphene, growth of twodimensional (2D) nanomaterials has greatly attracted attention. However, spontaneous growth of atomic two-dimensional (2D) materials is limitedly permitted for several layered-structure crystals, such as graphene, MoS_2, and h-BN, and otherwise it is notoriously difficult. Here we report the gas-phase 2D growth of silicon (Si), that is cubic in symmetry, via dendritic growth and an interdendritic filling mechanism and to form Si nanosheets (SiNSs) of 1 to 13 nm in thickness. Thin SiNSs show strong thickness-dependent photoluminescence in visible range including red, green, and blue (RGB) emissions with the associated band gap energies ranging from 1.6 to 3.2 eV; these emission energies were greater than those from Si quantum dots (SiQDs) of the similar sizes. We also demonstrated that electrically driven white, as well as blue, emission in a conventional organic light-emitting diode (OLED) geometry with the SiNS assembly as the active emitting layers. Tunable light emissions in visible range in our observations suggest practical implications for novel 2D Si nanophotonics.
机译:自从发现石墨烯以来,二维(2D)纳米材料的生长已引起了极大的关注。但是,有限的允许原子二维(2D)材料自发生长的几个层状结构晶体,例如石墨烯,MoS_2和h-BN,否则众所周知这是困难的。在这里,我们报告了通过枝晶生长和枝晶间填充机制以对称方式立方立方对称生长的硅(Si)气相二维生长,形成厚度为1至13 nm的Si纳米片(SiNSs)。薄的SiNS在可见光范围内显示出与厚度有关的强光致发光,包括红色,绿色和蓝色(RGB)发射,相关的带隙能量范围为1.6到3.2 eV。这些发射能量大于类似尺寸的Si量子点(SiQD)的发射能量。我们还证明了在传统的有机发光二极管(OLED)几何结构中,以SiNS组件为有源发光层的电致白色和蓝色发光。在我们的观察结果中,可见光范围内的可调光发射表明了新型2D Si纳米光子学的实际意义。

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