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Advanced materials (Deerfield Beach, Fla.). 2024 Feb;36(6):e2307388. doi: 10.1002/adma.202307388 Q126.82025

Universal Strategy for Inorganic Nanoparticle Incorporation into Mesoporous Liquid Crystal Polymer Particles

无机纳米粒子掺入介孔液晶聚合物颗粒的通用策略 翻译改进

Geunjung Lee  1, Geonhyeong Park  1, Jesse G Park  1, Yeongseo Bak  1, Changjae Lee  1, Dong Ki Yoon  1

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  • 1 Department of Chemistry, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34141, Republic of Korea.
  • DOI: 10.1002/adma.202307388 PMID: 37991422

    摘要 Ai翻译

    Developing inorganic-organic composite polymers necessitates a new strategy for effectively controlling shape and optical properties while accommodating guest materials, as conventional polymers primarily act as carriers that transport inorganic substances. Here, a universal approach is introduced utilizing mesoporous liquid crystal polymer particles (MLPs) to fabricate inorganic-organic composites. By leveraging the liquid crystal phase, morphology and optical properties are precisely controlled through the molecular-level arrangement of the host, here monomers. The controlled host material allows the synthesis of inorganic particles within the matrix or accommodation of presynthesized nano-inorganic particles, all while preserving the intrinsic properties of the host material. This composite material surpasses the functional capabilities of the polymer alone by sequentially integrating one or more inorganic materials, allowing for the incorporation of multiple functionalities within a single polymer particle. Furthermore, this approach effectively mitigates the drawbacks associated with guest materials resulting in a substantial enhancement of composite performance. The presented approach is anticipated to hold immense potential for various applications in optoelectronics, catalysis, and biosensing, addressing the evolving demands of the society.

    Keywords: inorganic-organic composite; liquid crystal polymer; metal-organic framework; perovskite.

    Keywords:inorganic nanoparticles

    Copyright © Advanced materials (Deerfield Beach, Fla.). 中文内容为AI机器翻译,仅供参考!

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    期刊名:Advanced materials

    缩写:ADV MATER

    ISSN:0935-9648

    e-ISSN:1521-4095

    IF/分区:26.8/Q1

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    Universal Strategy for Inorganic Nanoparticle Incorporation into Mesoporous Liquid Crystal Polymer Particles