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X-rayLithography on PerovskiteNanocrystals Films: From Patterningwith Anion-Exchange Reactions to Enhanced Stability in Air and Water

机译:X光钙钛矿上的光刻纳米晶体膜:从图案与阴离子交换反应增强空气和水中的稳定性

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摘要

Films of colloidal CsPbX3 (X = I, Br or Cl) nanocrystals, prepared by solution drop-casting or spin-coating on a silicon substrate, were exposed to a low flux of X-rays from an X-ray photoelectron spectrometer source, causing intermolecular C=C bonding of the organic ligands that coat the surface of the nanocrystals. This transformation of the ligand shell resulted in a greater stability of the film, which translated into the following features: (i) Insolubility of the exposed regions in organic solvents which caused instead complete dissolution of the unexposed regions. This enabled the fabrication of stable and strongly fluorescent patterns over millimeter scale areas. (ii) Inhibition of the irradiated regions toward halide anion exchange reactions, when the films were exposed either to halide anions in solution or to hydrohalic vapors. This feature was exploited to create patterned regions of different CsPbIxBryClz compositions, starting from a film with homogeneous CsPbX3 composition. (iii) Resistance of the films to degradation caused by exposure to air andmoisture, which represents one of the major drawbacks for the integrationof these materials in devices. (iv) Stability of the film in waterand biological buffer, which can open interesting perspectives forapplications of halide perovskite nanocrystals in aqueous environments.
机译:通过溶液滴铸或旋涂在硅基板上制备的胶态CsPbX3(X = I,Br或Cl)纳米晶体薄膜,暴露于来自X射线光电子能谱仪源的低X射线通量下,覆盖纳米晶体表面的有机配体的分子间C = C键。配体壳的这种转变导致膜的更大的稳定性,其转化为以下特征:(i)暴露区域在有机溶剂中的不溶性,反而引起未暴露区域的完全溶解。这使得能够在毫米级区域上制造稳定且强烈的荧光图案。 (ii)当将膜暴露于溶液中的卤化物阴离子或氢卤蒸气中时,照射区域对卤化物阴离子交换反应的抑制。从具有均匀CsPbX3组成的薄膜开始,利用此功能来创建不同CsPbIxBryClz组成的图案化区域。 (iii)薄膜抵抗因暴露于空气和水分,这是集成的主要缺点之一这些材料在设备中。 (iv)薄膜在水中的稳定性和生物缓冲液,可以为钙钛矿卤化物纳米晶体在水性环境中的应用

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