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Unveiling the Microscopic Origins of Phase Transformations: An in Situ TEM Perspective

机译:揭示相变的显微镜起源:原位TEM视角

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Nanostructuring inorganic solids has been effective as a tool to control the identity of the thermodynamically stable phase under ambient conditions for many systems. In addition, size effects can alter not only the temperature but also the other characteristics of a transformation-such as order, mechanism, and kinetics-which may further be responsible for the transient existence of intermediates, both thermodynamic and metastable, not accessed in the bulk. Since understanding the mechanism of a phase transformation requires local, even atomistic, information, and a similar understanding of the kinetics requires this information to be collected in real-time, in situ microscopy has proved invaluable in identifying key features of transformations on the nanoscale and promises to play a key role in the future design and implementation of such systems. Here, we discuss the use of in situ heating and biasing in the transmission electron microscope to investigate phase transformations in inorganic, single-phase, solid-state, nanostructured systems.
机译:纳米结构的无机固体作为一种工具,该工具是在许多系统的环境条件下控制热力学稳定相的同一性。此外,尺寸效果不仅可以改变温度,还可以改变变换的其他特征 - 例如订单,机制和动力学 - 这可能还负责中间体的瞬态存在,无论是热力学和亚稳态的吗?大部分。由于了解相变的机制需要局部,甚至原子的,信息和对动力学的类似理解需要实时收集的信息,以原位显微镜证明在识别纳米级和纳米级的转换的关键特征方面已经证明了无数。承诺在未来的设计和实施此类系统中发挥关键作用。这里,我们讨论在透射电子显微镜中使用原位加热和偏置,研究无机,单相,固态,纳米结构系统中的相变。

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