Chen Jiankang, Liu Jie, Yang Wen, Pei Ying
College of Materials Science and Engineering, Zhengzhou University, Zhengzhou 450001, China.
Institute of Physics, Henan Academy of Sciences, Zhengzhou 450046, China.
Polymers (Basel). 2023 Jan 10;15(2):375. doi: 10.3390/polym15020375.
A catalyst determines the mechanism of an organic chemical reaction, thus enabling the commercially viable formation of desired material products. Biopolymers offer new opportunities for the construction of catalysts by virtue of their biocompatibility, environmental benignity, and sustainability, as well as their low cost. Biopolymers are especially useful as carriers and precursors in catalysis application. The employment of biocompatible and biosustainable collagen and silk fibroin materials will revolutionize state-of-the-art electronic devices and systems that currently rely on conventional technologies. In this review, we first consider the ordered hierarchical structure, origin, and processing methods of collagen and silk fibroin. Then, the unique advantages and applicability of collagen and silk fibroin for constructing catalysts are summarized. Moreover, a summary of the state-of-the-art design, fabrication, and application of collagen- and silk fibroin-based catalysts, as well as the application of collagen- and silk-based catalysts, is presented by focusing on their roles as carriers and precursors, respectively. Finally, challenges and prospects are assessed for the construction and development of collagen and silk fibroin-based catalysts.
催化剂决定有机化学反应的机理,从而使所需材料产品能够以商业上可行的方式形成。生物聚合物凭借其生物相容性、环境友好性、可持续性以及低成本,为催化剂的构建提供了新的机遇。生物聚合物在催化应用中作为载体和前体特别有用。使用生物相容且生物可持续的胶原蛋白和丝素蛋白材料将彻底改变目前依赖传统技术的先进电子设备和系统。在本综述中,我们首先考虑胶原蛋白和丝素蛋白的有序层次结构、来源及加工方法。然后,总结了胶原蛋白和丝素蛋白在构建催化剂方面的独特优势和适用性。此外,分别聚焦于胶原蛋白和丝素蛋白基催化剂作为载体和前体的作用,对其最新的设计、制备及应用,以及基于胶原蛋白和丝素的催化剂的应用进行了综述。最后,评估了基于胶原蛋白和丝素蛋白的催化剂构建与开发面临的挑战和前景。