Janus聚合物/无机纳米复合材料的可扩展合成及其性能研究进展

IF 33.6 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Progress in Materials Science Pub Date : 2022-02-01 DOI:10.1016/j.pmatsci.2021.100888
Yijiang Liu , Jialin Wang , Yue Shao , Renhua Deng , Jintao Zhu , Zhenzhong Yang
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引用次数: 26

摘要

在过去的几十年里,由不同成分和/或功能的两个隔间组成的Janus纳米材料由于其不同的纳米结构和由两种成分和微观结构产生的有趣特性而引起了相当大的兴趣。Janus聚合物/无机纳米复合材料是一类独特的材料,它具有聚合物和无机物质的协同作用,具有吸引人的性能和广阔的应用前景。各种合成路线已经开发出一系列具有可调成分、形态和微观结构的Janus材料。本文综述了Janus聚合物/无机纳米复合材料在合理设计、精密合成和性能方面的最新进展。讨论了四种主要的合成策略,包括皮克林乳液界面合成、常规乳液界面合成、嵌段共聚物的约束自组装和种子膨胀乳液聚合。重点介绍了详细的合成方法和严格的Janus特性。本文旨在通过对Janus聚合物/无机纳米复合材料的合理设计和合成以及大规模生产的指导,从而引起聚合物和纳米材料界的广泛关注,从而进一步探索其非凡的特性和实际应用。
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Recent advances in scalable synthesis and performance of Janus polymer/inorganic nanocomposites

Janus nanomaterials composed of two compartments with dissimilar compositions and/or functionalities have garnered considerable interest over the past several decades owing to their diverse nanostructures and intriguing properties arising from the two constituents and microstructures. Janus polymer/inorganic nanocomposites represent a class of unique materials that afford synergistic features of polymers and inorganic substance, rendering appealing properties and promising applications. Various synthetic routes have been developed to craft a host of Janus materials with tunable composition, morphology and microstructures. This review focuses on the recent advances in rational design, precision synthesis, and performance of a set of Janus polymer/inorganic nanocomposites. Four main synthetic strategies are discussed, including Pickering emulsion interfacial synthesis, conventional emulsion interfacial synthesis, confined self-assembly of block copolymers, and seeded swelling emulsion polymerization. The detailed synthetic methods and strictly Janus characteristics are highlighted. This review aims to attract broad interests in the polymer and nanomaterial communities by directing the research focus on judicious design and synthesis as well as large-scale production of Janus polymer/inorganic nanocomposites, thereby imparting the further exploration of their extraordinary attributes and practical applications.

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来源期刊
Progress in Materials Science
Progress in Materials Science 工程技术-材料科学:综合
CiteScore
59.60
自引率
0.80%
发文量
101
审稿时长
11.4 months
期刊介绍: Progress in Materials Science is a journal that publishes authoritative and critical reviews of recent advances in the science of materials. The focus of the journal is on the fundamental aspects of materials science, particularly those concerning microstructure and nanostructure and their relationship to properties. Emphasis is also placed on the thermodynamics, kinetics, mechanisms, and modeling of processes within materials, as well as the understanding of material properties in engineering and other applications. The journal welcomes reviews from authors who are active leaders in the field of materials science and have a strong scientific track record. Materials of interest include metallic, ceramic, polymeric, biological, medical, and composite materials in all forms. Manuscripts submitted to Progress in Materials Science are generally longer than those found in other research journals. While the focus is on invited reviews, interested authors may submit a proposal for consideration. Non-invited manuscripts are required to be preceded by the submission of a proposal. Authors publishing in Progress in Materials Science have the option to publish their research via subscription or open access. Open access publication requires the author or research funder to meet a publication fee (APC). Abstracting and indexing services for Progress in Materials Science include Current Contents, Science Citation Index Expanded, Materials Science Citation Index, Chemical Abstracts, Engineering Index, INSPEC, and Scopus.
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