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首页> 外文期刊>ACS Omega >Synthesis, Characterization, and Stability Studies of Ge-Based Perovskites of Controllable Mixed Cation Composition, Produced with an Ambient Surfactant-Free Approach
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Synthesis, Characterization, and Stability Studies of Ge-Based Perovskites of Controllable Mixed Cation Composition, Produced with an Ambient Surfactant-Free Approach

机译:不含表面活性剂的方法生产的可控混合阳离子组成的锗基钙钛矿的合成,表征和稳定性研究

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In this report, we have applied a facile, ligand-free, ambient synthesis protocol toward the fabrication of not only a series of lead-free Ge-based perovskites with the general formulation of MA1–xFAxGeI3 (where x was changed from 0, 0.25, 0.5, 0.75, to 1) but also CsGeI3. Specifically, our methodology for producing ABX3 systems is generalizable, regardless of the identity of either the A site cation or the X site halide ion. Moreover, it incorporates many advantages, including (i) the possibility of efficiently generating pure Ge-based perovskite particles of any desired chemical composition, (ii) the use of readily available, commercial precursors and comparatively lower toxicity solvents, (iii) the practicality of scale up, and (iv) the elimination of the need for any superfluous organic surface ligands or surfactants. In addition to providing mechanistic insights into their formation, we have examined the chemical composition, crystallite size, morphology, surface attributes, oxidation states, and optical properties of our as-prepared perovskites using a combination of diffraction, microscopy, and spectroscopy techniques. Specifically, we noted that the optical band gap could be reliably tuned as a function of chemical composition, via the identity of the A site cation. Moreover, we have probed their stability, not only under standard storage conditions but also, for the first time, when subjected to both e-beam- and X-ray-induced degradation, using cumulative data from sources such as synchrotron-based scanning hard X-ray microscopy. Importantly, of relevance for the potential practical incorporation of these Pb-free perovskites, our work has emphasized the possibility of controlling the chemical composition within Ge-based perovskites as a means of rationally tuning their observed band gaps and optical behavior.
机译:在本报告中,我们已经应用了简便,无配体的环境合成方案,不仅用于制造一系列通用配方为MA1-xFAxGeI3的无铅Ge基钙钛矿(其中x从0,0.25更改为(0.5、0.75、1),也可以是CsGeI3。特别地,我们的生产ABX3系统的方法是可推广的,而不管A位阳离子或X位卤离子的身份如何。而且,它具有许多优点,包括(i)可以有效地产生具有任何所需化学组成的纯Ge基钙钛矿颗粒的可能性,(ii)使用容易获得的市售前体和毒性相对较低的溶剂,(iii)实用性扩大规模;(iv)消除对任何多余的有机表面配体或表面活性剂的需求。除了提供有关其形成机理的机械见解之外,我们还结合衍射,显微镜和光谱技术检查了所制备钙钛矿的化学组成,微晶尺寸,形态,表面属性,氧化态和光学性质。具体而言,我们注意到,通过A位阳离子的身份,可以根据化学成分可靠地调节光学带隙。此外,我们不仅使用了标准的同步加速器扫描,还尝试了它们的稳定性,不仅是在标准存储条件下,而且还首次受到了电子束和X射线引起的降解时的稳定性。 X射线显微镜。重要的是,与这些无铅钙钛矿的潜在实际掺入有关,我们的工作强调了控制Ge基钙钛矿中化学成分的可能性,作为合理调整其观察到的带隙和光学行为的一种手段。

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