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Curved 2D WS(2)nanostructures: nanocasting and silent phonon mode

机译:曲线2 d WS(2)纳米结构:nanocasting和沉默的声子模式

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摘要

Layered two-dimensional (2D) materials and their heterostructures possess excellent optoelectronic properties due to their unique planar features. However, planar structures can only selectively support the fundamental optical modes, which is averse to fully exploit the potential of the 2D materials. Here, a novel type of tungsten disulfide (WS2) nanoparticle (NP) with a uniform size and morphology and highly ordered WS(2)supercrystals (SCs) are synthesized by a nanocasting process using ordered mesoporous silica as a template. Due to the curved feature of individual nanostructures, their Raman signals show complex dependence behavior on the excitation wavelength, excitation power and temperature. Significantly, the silent phonon mode becomes Raman active due to the curvature of the interlaced WS(2)layers. We believe that curved features will greatly enrich the optoelectronic applications of 2D materials.
机译:分层的二维(2 d)材料和他们异质结构具有优良的光电由于其独特的平面特征属性。然而,只能选择性的平面结构支持基本的光学模式,反对充分利用2 d的潜力材料。二硫(WS2)纳米颗粒(NP),制服大小和形态和高度有序的WS (2) supercrystals (SCs)是合成的使用有序介孔nanocasting过程硅作为模板。单独的纳米结构,他们的拉曼信号显示复杂的依赖行为激发波长和激发力量温度。模式成为由于曲率的拉曼活性交错WS(2)层。弯曲的特性将极大地丰富二维材料的光电应用程序。

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