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Making by Grinding: Mechanochemistry Boosts the Development of Halide Perovskites and Other Multinary Metal Halides

机译:研磨制造:机械化学促进钙钛矿和其他多元金属卤化物的发展

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Mechanochemical synthesis has recently emerged as a promising route for the synthesis of functional lead halide perovskites as well as other (lead-free) metal halides. Mechanochemical synthesis presents several advantages with regards to more commonly used solution-based processes such as an inherent lower toxicity by avoiding organic solvents and a finer control over stoichiometry of the final products. The ease of implementation, either through the use of a simple mortar and pestle or with an electrically powered ball-mill, and low amount of side products make mechanochemical synthesis appealing for upscaling the production of halide perovskites. Due to the defect tolerance of lead halide perovskites, they are ideally suited to be prepared by this solvent-free method. However, the implementation of these semiconductors in high-efficiency optoelectronic devices requires the transformation of synthesized powder into smooth thin films where still some hurdles remain to be cleared.
机译:近年来,机械化学合成已成为合成功能性卤化钙钛矿以及其他(无铅)金属卤化物的一种有前途的途径。关于更常用的基于溶液的方法,机械化学合成具有多个优点,例如通过避免有机溶剂而固有的较低毒性,以及对最终产品化学计量的更好控制。通过使用简单的研钵和研杵或使用电动球磨机,易于实施,并且副产品量少,使机械化学合成具有吸引力,可扩大卤化钙钛矿的生产规模。由于卤化钙钛矿的缺陷耐受性,它们非常适合通过这种无溶剂方法制备。然而,这些半导体在高效光电器件中的实现要求将合成粉末转变为光滑的薄膜,而仍然需要清除一些障碍。

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