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首页> 外文期刊>Angewandte Chemie >Water-Mediated Surface Diffusion Mechanism Enables the Cold Sintering Process: A Combined Computational and Experimental Study
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Water-Mediated Surface Diffusion Mechanism Enables the Cold Sintering Process: A Combined Computational and Experimental Study

机译:水介导的表面扩散机制使冷烧结过程能够:组合计算和实验研究

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The cold sintering process (CSP) densifies ceramics at much lower temperatures than conventional sintering processes. Several ceramics and composite systems have been successfully densified under cold sintering. For the grain growth kinetics of zinc oxide, reduced activation energies are shown, and yet the mechanism behind this growth is unknown. Herein, we investigate these mechanisms in more detail with experiments and ReaxFF molecular dynamics simulations. We investigated the recrystallization of zinc cations under various acidic conditions and found that their adsorption to the surface can be a rate-limiting factor for cold sintering. Our studies show that surface hydroxylation in CSP does not inhibit crystallization; in contrast, by creating a surface complex, it creates an orders of magnitude acceleration in surface diffusion, and in turn, accelerates recrystallization.
机译:冷烧结过程(CSP)在比常规烧结过程的温度下致密陶瓷。 在冷烧结下成功致密了几种陶瓷和复合系统。 对于氧化锌的晶粒生长动力学,显示了降低的活化能量,并且该生长背后的机制未知。 在此,我们更详细地研究了这些机制,并在实验和Reaxff分子动力学模拟中更详细地研究了这些机制。 我们在各种酸性条件下调查了锌阳离子的重结晶,发现它们对表面的吸附可以是冷烧结的速率限制因素。 我们的研究表明,CSP中的表面羟基化不抑制结晶; 相比之下,通过创建表面复合物,它在表面扩散中创造了一个幅度加速度,然后加速再结晶。

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