透视结晶对生物活性玻璃和玻璃陶瓷的影响

Maziar Montazerian, Adam Shearer, John C. Mauro
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引用次数: 0

摘要

意外结晶和诱导结晶都会影响生物活性玻璃(BGs)的生物活性、物理和机械性能。不受控制的结晶会产生负面影响,使生物活性玻璃变得不可靠。然而,通过控制生物活性玻璃中晶体的类型、大小、形状和数量,就有很多机会控制机械性能和降解性等,从而实现独特的应用并提高性能。了解结晶是开发生物活性玻璃和玻璃陶瓷 (BGC) 的关键一步,基础研究和实验研究都有助于设计 BGC 的加工和生物功能。在本文中,我们将讨论结晶的来源以及受控结晶如何促进生物活性支架、混合材料、涂层、复合材料、水泥和纤维的功能化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Perspectives on the impact of crystallization in bioactive glasses and glass-ceramics

Perspectives on the impact of crystallization in bioactive glasses and glass-ceramics

Both unwanted and induced crystallization can impact bioactivity, physical and mechanical properties of bioactive glasses (BGs). Uncontrolled crystallization has negative consequences, rendering BGs unreliable. However, by manipulating the type, size, shape, and quantity of crystals in BGs, plenty of opportunities arise for controlling, for example, mechanical properties and degradability, leading to unique applications and improved performance. Understanding crystallization is a key step in developing bioactive glasses and glass-ceramics (BGCs), and both fundamental and experimental research can aid in the design of BGCs for processing and biological function. In this perspective, we discuss the sources of crystallization and how controlled crystallization facilitates the functionalization of bioactive scaffolds, hybrids, coatings, composites, cements, and fibers.

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