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3D microstructure analysis of silicon-boron phosphide mixed nanocrystals

机译:3 d silicon-boron的显微结构分析磷化混合纳米晶体

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摘要

The microstructure of boron (B) and phosphorus (P) codoped silicon (Si) nanocrystals (NCs), cubic boron phosphide (BP) NCs and their mixed NCs (BxSiyPz NCs) has been studied using atom probe tomography (APT), transmission electron microscopy (TEM), and Raman scattering spectroscopy. The BxSiyPz NCs inherit superior properties of B and P codoped Si NCs such as high dispersibility in aqueous media and near infrared (NIR) luminescence and those of cubic BP NCs such as high chemical stability. The microanalyses revealed that BxSiyPz NCs are composed of a crystalline core and an amorphous shell. The core possesses a lattice constant between that of Si (diamond-cubic) and BP (cubic). The amorphous shell is comprised of B, Si and P, though the composition is not uniform and there are local B-rich, Si-rich and P-rich domains connected contiguously. The amorphous shell is proposed to be responsible for their superior chemical properties such as high dispersibility in polar solvents and high resistance to acids, and the crystalline core is responsible for the stable NIR luminescence.
机译:硼的微观结构(B)和磷(P)磷化硼(BP) nc及其混合nc(BxSiyPz nc)研究了使用原子探针透射电子断层扫描(APT)显微镜(TEM)和拉曼散射光谱学。B、P codoped Si nc的属性,例如高在水分散性媒体和近红外(NIR)发光和立方BP nc化学稳定性。透露,BxSiyPz nc组成的水晶核心和一个非晶壳。如果拥有之间的晶格常数(diamond-cubic)和英国石油公司(立方)。外壳是由B, Si和P,虽然成分不均匀,有地方B-rich、制备和P-rich域连接连续。负责上级化学高在极地分散性等性能溶剂和高阻酸,和水晶核心负责稳定近红外发光。

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