Inonu University, Department of Chemistry, 44280 Malatya, Turkey.
Inonu University, Department of Molecular Biology and Genetics, 44280 Malatya, Turkey.
Chem Rev. 2020 Sep 9;120(17):9304-9362. doi: 10.1021/acs.chemrev.9b00553. Epub 2020 Jul 30.
Researchers have recently focused on the advancement of new materials from biorenewable and sustainable sources because of great concerns about the environment, waste accumulation and destruction, and the inevitable depletion of fossil resources. Biorenewable materials have been extensively used as a matrix or reinforcement in many applications. In the development of innovative methods and materials, composites offer important advantages because of their excellent properties such as ease of fabrication, higher mechanical properties, high thermal stability, and many more. Especially, nanocomposites (obtained by using biorenewable sources) have significant advantages when compared to conventional composites. Nanocomposites have been utilized in many applications including food, biomedical, electroanalysis, energy storage, wastewater treatment, automotive, etc. This comprehensive review provides chemistry, structures, advanced applications, and recent developments about nanocomposites obtained from biorenewable sources.
研究人员最近关注的是从生物可再生和可持续资源中开发新材料,因为人们对环境、废物积累和破坏以及不可避免的化石资源枯竭非常关注。生物可再生材料已广泛用作许多应用中的基质或增强材料。在开发创新方法和材料方面,复合材料具有重要的优势,因为它们具有出色的性能,例如易于制造、更高的机械性能、高热稳定性等等。特别是,与传统复合材料相比,纳米复合材料(由生物可再生资源获得)具有显著的优势。纳米复合材料已在许多应用中得到利用,包括食品、生物医学、电分析、储能、废水处理、汽车等。本综述全面介绍了生物可再生资源纳米复合材料的化学、结构、先进应用和最新进展。