利用组合光谱法对掺铜 SrTiO3 中的溶出过程进行严格评估。

IF 6.1 1区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR Inorganic Chemistry Frontiers Pub Date : 2024-11-22 DOI:10.1039/d4qi02391a
Pietro Mariani, xiao sun, Simone Mascotto, Luisa Raimondo, Adele Sassella, Damiano Monticelli, Enrico Berretti, Alessandro Lavacchi, Matus Stredansky, Cinzia Cepek, Silvia Mostoni, Carlo Santoro, Barbara Di Credico, Roberto Scotti, Massimiliano D'Arienzo
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引用次数: 0

摘要

该方法首次将 XAS、XPS 和 STEM 等描述外溶解的常用方法与电子顺磁共振 (EPR) 和紫外可见光漫反射 (UV-DRS) 等非常规策略相结合。XAS 和 EPR 表明,铜以无定形的 Cu2O 和位于表面的 CuO 以及具有扭曲八面体结构的置换 Cu2+ 晶格物种的形式存在于基质中的无序配位环境中。有趣的是,EPR 发现,在溶解过程中,具有无序配位的 Cu2+ 表面位点主要通过选择性还原迁移,而晶格缺陷则会延迟迁移。通过跟踪等离子共振效应,UV-DRS 成为了 HRTEM 的有效替代品,可用于确定外溶解纳米粒子的大小。此外,当 XANES 显示铜在重新氧化后完全恢复了原始状态时,UV-DRS 和 EPR 都强调了原始特征并没有完全恢复。这些结果表明,可外溶物的化学环境比预期的要复杂得多,外溶过程也比预期的要简单得多。因此,应利用其他的原始表征技术,为有效评估这一现象提供可靠的方法基准。
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Critical assessment of exsolution process in Cu-doped SrTiO3 by a combined spectroscopic approach.
The surface transformation and defects evolution of Cu-doped SrTiO3 upon copper exsolution by exploiting a multi-technique approach which integrates, for the first time, common methods describing exsolution like XAS, XPS and STEM with unconventional strategies, namely electron paramagnetic resonance (EPR) and UV-Vis diffuse reflectance (UV-DRS). XAS and EPR indicated that copper occurs in the matrix in a disordered coordination environment as amorphous Cu2O and CuO located at the surface and as substitutional Cu2+ lattice species with distorted octahedral structure. Interestingly, EPR unveiled that, during exsolution, Cu2+ surface sites with disordered coordination primarily migrate undergoing selective reduction, while a delay is observed for the lattice defects. UV-DRS resulted a valid alternative to HRTEM to determine the size of exsolved nanoparticles by tracking the plasmon resonance effect. Moreover, when XANES showed the complete regain of the pristine state of Cu after reoxidation, both UV-DRS and EPR highlighted that the original features are not entirely restored. These outcomes suggest that the chemical environment of exsolvable species is much more heterogeneous and the exsolution process much less straightforward than expected. Thus, alternative and original characterization techniques should be exploited to provide a solid methodological benchmark for an effective evaluation of this phenomenon.
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来源期刊
Inorganic Chemistry Frontiers
Inorganic Chemistry Frontiers CHEMISTRY, INORGANIC & NUCLEAR-
CiteScore
10.40
自引率
7.10%
发文量
587
审稿时长
1.2 months
期刊介绍: The international, high quality journal for interdisciplinary research between inorganic chemistry and related subjects
期刊最新文献
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