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首页> 外文期刊>Nanoscale >Tunable photoluminescence and an enhanced photoelectric response of Mn2+-doped CsPbCl3 perovskite nanocrystals via pressure-induced structure evolution
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Tunable photoluminescence and an enhanced photoelectric response of Mn2+-doped CsPbCl3 perovskite nanocrystals via pressure-induced structure evolution

机译:可调光致发光和增强光电响应Mn2再版CsPbCl3钙钛矿通过pressure-induced纳米晶体结构演变

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Mn2+:CsPbCl3 nanocrystals (NCs) were synthesized using a modified one-pot injection method, which exhibits significantly improved thermal stability. For the first time, the pressure-treated optical and structural properties of synthetic Mn2+:CsPbCl3 NCs were further investigated, and their associated intriguing electrical and photoelectric properties were revealed from impedance spectra and photocurrent measurements under compression. The pressure-dependent photoluminescence experienced an initial redshift before 1.7 GPa followed by a continuous blueshift, as evidenced by the bandgap shifts. High-pressure XRD spectra uncovered a cubic-to-orthorhombic structural transition at about 1.1 GPa and subsequent amorphization upon further compression, which was fully reversible. Furthermore, the sample annealing from 340 K drove grain growth and decreased grain boundary resistance at ambient pressure. The compression further decreased the grain boundary barrier and improved the electrical conductivity (up to similar to 10(-2) omega(-1) cm(-1)) of the thermally annealed Mn2+:CsPbCl3 NC surface. Simultaneous photocurrent enhancement of thermally annealed NCs was also achieved as expected, and reached optimal performance at 0.7 GPa. Strikingly, after the pressure cycling (loading-releasing), the results show that thermally annealed Mn2+:CsPbCl3 NCs gained preservable higher electrical conductivity (similar to 10 times increase) and an improved photoelectric response compared to the ambient state before compression. This work proves that high pressure is useful for opening the versatility in the structure and properties of metal-halide perovskite nanocrystals leading to a promising way for superior optoelectronic materials-by-design.
机译:Mn2 +: CsPbCl3纳米晶体合成(nc)使用修改后的锅注入的方法展品显著提高热稳定。加压处理的光学和结构属性合成Mn2 +: CsPbCl3 nc进一步的调查,和它们相关的有趣的电子和光电从阻抗谱显示属性在压缩和光电流测量。与压力有关的的光致发光经历过最初的红移1.7绩点紧随其后的是一个连续的蓝移,就是明证隙的变化。发现了一个cubic-to-orthorhombic结构在大约1.1的绩点和随后的过渡无定形化在进一步压缩,完全可逆的。从340 K退火晶粒生长和开车在环境减少晶界电阻压力。晶界势垒和改进电导率(类似于10 (2)ω(1)厘米(1))的热退火Mn2 +: CsPbCl3数控表面。光电流增强的热退火nc也达到预期,并达成在0.7的绩点最优性能。骑自行车(loading-releasing)的压力结果表明,热退火Mn2 +: CsPbCl3nc获得可保存的更高的电电导率(类似于增加10倍)一种改进的光电响应相比压缩前的环境状态。对于开证明高压是有用的多功能性的结构和属性金属卤化钙钛矿的纳米晶体为优越的光电有前途的方法materials-by-design。

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