Croconic酸基化合物:一类有趣的功能有机材料的合成、结构特征、性能和应用

IF 5.2 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Maria Montrone, Umberto Berardi, Antonio Cardone and Maria Annunziata M. Capozzi
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引用次数: 0

摘要

本文是根据对芥酸基材料的科学进展及其潜在的技术应用进行综述的需要而进行的。生物医学和能源领域的现代技术挑战都需要使用对人类安全的环境友好型材料和设备。Croconic酸基化合物是一类有趣的功能有机材料,具有巨大的潜力,因为它们结合了内在的生物相容性和化学物理特性,对许多应用非常有吸引力,包括在生物医学领域,即治疗学;能源领域,即能源转换、储能和节能;和感应场。尽管潜力巨大,但迄今为止,文献中只有少数综述涵盖了合成或主要是生物医学应用等特定方面,而综述总结了这类有趣的有机材料从设计到应用的所有研究,却缺乏。本文从合成方法、基本结构特征、化学物理性质和应用等方面综述了这类功能有机材料的研究进展和作用,希望能激发人们对未来前景的新见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Croconic acid-based compounds: synthesis, structural characteristics, properties and applications of an intriguing class of functional organic materials

The present review springs up from the demand for an overview on the scientific advances in croconic acid-based materials and their potential technological applications. Modern technological challenges in the biomedical and energy fields share the common need for the use of environmentally friendly materials and devices that are safe for humans. Croconic acid-based compounds are an interesting class of functional organic materials of great potential since they combine intrinsic biocompatibility with chemico-physical properties that are very attractive for a number of applications, including in the bio-medical sector, i.e., theranostics; energy field, i.e., energy conversion, energy storage and energy saving; and sensing field. Despite the high potential, to date, only few reviews covering specific aspects such as synthesis or, mainly, biomedical applications are available in the literature, while reviews summarizing all investigations performed on this intriguing class of organic materials, from their design to application, are lacking. Through an overview of synthetic approaches, basic structural characteristics, chemico-physical properties and applications, the present review aims to extensively analyse the research advances and the role played by such functional organic materials, with the hope of stimulating new insights for future perspectives.

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来源期刊
Materials Advances
Materials Advances MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
7.60
自引率
2.00%
发文量
665
审稿时长
5 weeks
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