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首页> 外文期刊>Journal of Microscopy >Defining the radiation chemistry during liquid cell electron microscopy to enable visualization of nanomaterial growth and degradation dynamics
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Defining the radiation chemistry during liquid cell electron microscopy to enable visualization of nanomaterial growth and degradation dynamics

机译:在液体电池电子显微镜下定义辐射化学,以实现纳米材料的可视化和降解动力学

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摘要

We present a critical review of methods for defining the chemical environment during liquid cell electron microscopy investigation of electron beam induced nanomaterial growth and degradation. We draw from the radiation chemistry and liquid cell electron microscopy literature to present solution chemistry and electron beam-based methods for selecting the radiolysis products formed and their relative amount during electron irradiation of liquid media in a transmission electron microscope. We outline various methods for establishing net oxidizing or net reducing reaction environments and propose solvents with minimal overall production of radicals under the electron beam. Exemplary liquid cell electron microscopy experiments in the fields of nanoparticle nucleation, growth, and degradation along with recommendations for best practices and experimental parameters are reported. We expect this review will provide researchers with a useful toolkit for designing general chemistry and materials science liquid cell electron microscopy experiments by 'directing' the effect of the electron beam to understand fundamental mechanisms of dynamic nanoscale processes as well as minimizing radiation damage to samples.
机译:我们对电子束型纳米材料显微镜调查纳米材料生长和降解的液体细胞电子显微镜研究期间对化学环境的方法进行了关键综述。从辐射化学和液体电池电子显微镜文献中汲取到呈现溶液化学和基于电子束的方法,以选择形成的辐射分解产物及其在透射电子显微镜中液体介质电子照射期间的相对量。我们概述了用于建立净氧化或净还原反应环境的各种方法,并提出溶剂,在电子束下具有最小的自由基的整体生产。报道了纳米颗粒核细胞领域中的示例性液体电池电子显微镜实验以及用于最佳实践和实验参数的推荐。我们预计这一审查将通过“指导”电子束的效果来了解一般化学和材料科学液体细胞电子显微镜实验,为研究型纳米级流程的基本机制以及最小化对样品的辐射损伤来设计一般化学和材料科学液体细胞电子显微镜实验的有用工具包。

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