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Pressure-stimulus-responsive behaviors of core–shell InP/ZnSe nanocrystals: remarkable piezochromic luminescence and structural assembly

机译:Pressure-stimulus-responsive的行为核壳InP /奈米纳米晶体:引人注目piezochromic发光和结构组装

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摘要

Piezochromic luminescence materials with optical properties can be adjusted (the colors most sensitive to the human eye range from red to green) to provide powerful means for information acquisition in various applications. Inorganic quantum dots, typically based on heavy metals such as cadmium and lead, have congenital advantages as luminescence materials, including strong inoxidizability and excellent photoelectric properties. However, small band-gap shifts under pressure have hindered the development of inorganic-based piezochromic materials. Herein, we combined in situ high-pressure photoluminescence (PL) and absorption measurements with synchrotron X-ray scattering spectra to elucidate the remarkable modulation of optical properties and morphologies by pressure, particularly that of the piezochromic luminescence, in all-inorganic core–shell InP/ZnSe nanocrystals (NCs). We observed a stepwise PL color change from red to green, and an ultrabroad bandgap tunability of 0.46 eV was observed from 1.99 to 2.45 eV in the pressure range of 14.2 GPa for InP/ZnSe NCs. Moreover, two-dimensional (2D) InP/ZnSe nanosheets were synthesized by the stress-driven attachment of nanoparticles. These results demonstrate the ability of the pressure-stimulus response to trigger remarkable piezochromic luminescence and 2D nanosheet assembly in InP/ZnSe NCs, which paves the way for new applications of all-inorganic InP-based semiconductor NCs.
机译:与光学Piezochromic发光材料属性可以调整(颜色最多对人类的眼睛从红色到敏感绿色)提供信息的有力手段收购各种应用程序。量子点,通常基于重金属镉和铅等,有先天性具有发光材料,包括强有力的抗氧化性和良好的光电性质。变化的压力下已经阻碍了发展inorganic-based piezochromic材料。高压光致发光(PL)与同步x射线吸收测量阐明卓越的散射光谱调制的光学性质和形态的压力,特别的在all-inorganic piezochromic发光核壳InP /奈米纳米晶体(nc)。观察从红色到逐步PL颜色变化绿、超宽频带隙可调谐性的0.46 eV观察从1.99到2.45 eV压力范围14.2绩点输入/ nc奈米。此外,二维(2 d) InP /奈米由stress-driven nanosheets合成纳米粒子的附件。演示压迫刺激的能力响应触发piezochromic显著发光和2 d nanosheet组装输入/ nc奈米,这为新铺平了道路应用all-inorganic InP-based半导体nc。

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