论文标题

了解通往大面积的合成途径,高质量[Agseph]纳米晶膜

Understanding the Synthetic Pathway to Large Area, High Quality [AgSePh] Nanocrystal Films

论文作者

Maserati, Lorenzo, Pecorario, Stefano, Prato, Mirko, Caironi, Mario

论文摘要

银苯甲烯酸酯[Agseph]是一种配位聚合物,具有杂种量子井结构。在研究紧密结合的激子(〜300 MEV)和光电传入性能(最近在紫外线光电检测中使用)的最新进展使其成为材料平台的有趣代表,它是光电特性的2D金属卤化物钙胶质的环境稳定替代品。为此,将要解决一些挑战,其中在[Agseph]纳米晶体膜(NC)的合成中缺乏对金属有机反应过程的控制。这个问题引起了人们对其带内gap电子状态的起源的疑问。在本文中,我们研究了从薄银膜通过紫外线,XRD,SEM和AFM通过化学蒸气 - 固醇与苯甲烯醇的氧化和反应,从薄银膜通过化学蒸气 - 固定氧化的所有步骤。拉曼和FTIR光谱也被用于首次在该聚合物上提供振动峰分配。我们的分析支持基于酸攻击金属氧化物前体的酸性反应方案,从而产生水作为聚合物合成的副产品,从而通过溶解PHSEH来加快反应。该反应在90°C的超饱和PHSEH / N2大气中很容易在30分钟内完成。我们的分析表明,没有前体的剩菜或氧化物种可能有助于差距内。通过调整反应参数,我们获得了对膜形态的控制,以获得与底物并行的微晶,显示出不同的激子吸收强度。最后,可以在大区域应用中获得厘米尺寸的高质量[Agseph] NC膜,从而可以利用其光电特性,例如紫外光检测。

Silver benzeneselenolate [AgSePh] is a coordination polymer that hosts a hybrid quantum well structure. The recent advancements in the study of its tightly bound excitons (~300 meV) and photoconductive properties (recently employed in UV photodetection) makes it an interesting representative of a material platform that is an environmentally stable alternative to 2D metal halide perovskites in terms of optoelectronic properties. To this aim, several challenges are to be addressed, among which the lack of control over the metal-organic reaction process in the reported synthesis of the [AgSePh] nanocrystal film (NC). This issue contributed to cast doubts over the origin of its intra-bandgap electronic states. In this article we study all the steps to obtain phase pure [AgSePh] NC films, from thin silver films through its oxidation and reaction via a chemical vapor-solid with benzeneselenol, by means of UV-vis, XRD, SEM, and AFM. Raman and FTIR spectroscopy are also employed to provide vibrational peaks assignment, for the first time on this polymer. Our analysis supports an acid-base reaction scheme based on an acid attacking the metal oxide precursor, generating water as byproduct of the polymeric synthesis, speeding up the reaction by solvating the PhSeH. The reaction readily goes to completion within 30 min in a supersaturated PhSeH / N2 atmosphere at 90 °C. Our analysis suggests the absence of precursor's leftovers or oxidized species that could contribute to the intra-gap states. By tuning the reaction parameters, we gained control on film morphology to obtain substrate-parallel oriented micro-crystals showing different excitonic absorption intensities. Finally, centimeters size high quality [AgSePh] NC films could be obtained, enabling exploitation of their optoelectronic properties, such as UV photodetection, in large-area applications.

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