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Polymer/inorganic hybrid for advanced functional materials

机译:用于高级功能材料的聚合物/无机混合物

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Advanced functional materials have been extended to various fields such as transportation, medical, aerospace, military and so on. Functional fibers are attracted great attentions for their improved properties in recent years. Organic/Inorganic hybrid technique is an effective method to prepare functional materials which integrate functional inorganic nano-materials into polymer matrix by establishing their synergistic effect. In this work, the interaction mechanisms of organic/inorganic hybrid structure have been discussed. A series of organic/inorganic hybrid functional materials and fibers have been prepared, such as PET fibers with excellent antibacterial properties, high performance PPS fibers with ultraviolet resistant property, fine denier PP fibers with improved dyeability, PVA fiber with absorbing properties as well as hybrid materials for biomedical application. They will not only meet the requirement of high-quality textiles, but also promote their application in safety, environmental protection, energy and healthcare fields. This work is financially supported by the National Natural Science Foundation for Distinguished Young Scholar of China (50925312), and the Shanghai Nano Special Projects (0852nm00300,0952nm05600).
机译:先进的功能材料已扩展到交通,医疗,航空航天,军事等各个领域。近年来,功能性纤维由于其改善的性能而引起了极大的关注。有机/无机杂化技术是一种有效的制备功能材料的方法,该功能材料通过建立起协同作用,将功能性无机纳米材料整合到聚合物基质中。在这项工作中,已经讨论了有机/无机杂化结构的相互作用机理。已经制备了一系列有机/无机杂化功能材料和纤维,例如具有优异抗菌性能的PET纤维,具有抗紫外线性能的高性能PPS纤维,具有改善的可染性的细旦PP纤维,具有吸收性的PVA纤维以及杂化纤维生物医学应用材料。它们不仅可以满足高质量纺织品的要求,而且可以促进它们在安全,环保,能源和医疗保健领域的应用。这项工作得到了中国国家自然科学基金会杰出青年学者(50925312)和上海纳米专项计划(0852nm00300,0952nm05600)的资助。

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