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Construction of Inorganic Bulks through Coalescence of Particle Precursors

机译:通过颗粒前体聚结的施工无机块

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摘要

Bulk inorganic materials play important roles in human society, and their construction is commonly achieved by the coalescence of inorganic nano- or micro-sized particles. Understanding the coalescence process promotes the elimination of particle interfaces, leading to continuous bulk phases with improved functions. In this review, we mainly focus on the coalescence of ceramic and metal materials for bulk construction. The basic knowledge of coalescent mechanism on inorganic materials is briefly introduced. Then, the properties of the inorganic precursors, which determine the coalescent behaviors of inorganic phases, are discussed from the views of particle interface, size, crystallinity, and orientation. The relationships between fundamental discoveries and industrial applications are emphasized. Based upon the understandings, the applications of inorganic bulk materials produced by the coalescence of their particle precursors are further presented. In conclusion, the challenges of particle coalescence for bulk material construction are presented, and the connection between recent fundamental findings and industrial applications is highlighted, aiming to provide an insightful outlook for the future development of functional inorganic materials.
机译:散装无机材料在人类社会中起重要作用,并且它们的结构通常通过无机纳米或微尺寸颗粒的聚结来实现。理解聚结过程促进消除颗粒界面,导致具有改进功能的连续散装相。在本综述中,我们主要关注陶瓷和金属材料的聚结,用于散装建设。简要介绍了无机材料结束机制的基本知识。然后,从粒子界面,尺寸,结晶度和取向的视图中讨论了确定无机阶段的结束行为的无机前体的性质。强调了基本发现与工业应用之间的关系。基于谅解,进一步提出了由其颗粒前体的聚结产生的无机散装材料的应用。总之,介绍了粒子结束对散装材料结构的挑战,突出了最近的基础发现和工业应用的联系,旨在为功能无机材料的未来发展提供富有洞察力的前景。

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