首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >One-Step Synthesis of Hydrophobic Multicompartment Organosilica Microspheres with Highly Interconnected Macro-mesopores for the Stabilization of Liquid Marbles with Excellent Catalysis
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One-Step Synthesis of Hydrophobic Multicompartment Organosilica Microspheres with Highly Interconnected Macro-mesopores for the Stabilization of Liquid Marbles with Excellent Catalysis

机译:具有高度相互连接的宏观 - 中孔的疏水性多组分有机硅基微球的一步合成,用于稳定液体大理石的优异催化

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摘要

The combination of an emulsion template with polymerization is a very convenient approach to the one-step realization of both simple control porous structures via a change in emulsion formulation and easy functionalization via the concomitant choice of an on-demand monomer. A major challenge of this approach is the inherent instability of the oil/water interface in emulsions, especially the occurrence of chemical reactions in oil or aqueous phases. This study reports the pioneering preparation of highly interconnected macro-mesopores and multicompartment (HIMC) vinyl organosilica microspheres with hydrophobicity by the one-step formation of W/O/W emulsions acting as a :template. The emulsion system consists of acidified deionized water, a stabilizer, and vinyltriethoxysilane (VTEO) in which VTEO can be used to produce an. organosilica skeleton of the resultant microsphere by a sol-gel process. The study demonstrated that the marvelousstability of W/O/W emulsions aids the formation of mtilticompartment organosilica microspheres with highly interconnected macro-mesopores by emulsion droplets rather than single -compartment (SC) microspheres. Menwhile, the internal porous structure and surface morphology of as-prepared organosilica microspheres could be largely toned by a simple variation of the pH value, the volume fraction of the water phase, and -the stabilizer concentration in the initiating multiemuisions. Benefiting from such a well-orchestrated structure and the existence of numerous vinyl groups on the surface; HIMC organosilica microspheres exhibit very high hydrophobicity (with a water contact angle larger than 160), which allows them to stabilize liquid marbles with excellent stability and high mechanical robustness. Because of its strong catalyst, Ag nanopartides within HIMC organosilica microspheres enable Ag/HIMC-vinyl organosilica microsphere-based liquid marbles to be an efficient catalytic rhicroreactor, realizing the complete degradation of MB to leuco methylene blue by NaBH4 in 10 min. The result of this work could provide some guidance for the easy, low-cost, benign preparation of HIMC microspheres having the potential to be excellent supporter of metal nanoparticles or other functionalized compounds for applications in sensing, optoelectronics, and catalysis.
机译:乳液模板与聚合的组合是通过乳液配方的变化和通过伴随的按需单体的选择,通过乳液制剂的变化和易于官能化的一步实现的非常方便的方法。这种方法的主要挑战是乳液中的油/水界面的固有不稳定,特别是油或水相中化学反应的发生。该研究报告了通过用作A:模板的W / O / W乳液的一步形成,通过疏水性地报告高互连的宏观 - 中孔和多分量(HIMC)乙烯基有机硅片微球。乳液系统由酸化的去离子水,稳定剂和乙烯基转氧基硅烷(VTEO)组成,其中VTEO可用于生产vTEO。由溶胶 - 凝胶工艺得到的微球的有机硅骨架。该研究表明,W / O / W乳液的辐射性能够通过乳液液滴而不是单个 - 组件(SC)微球形成具有高度互连的宏观-Mesopores的Mtticompactment有机菌微球。寿命,由制备的有机硅片的内部多孔结构和表面形态可以通过pH值的简单变化,水相的体积分数,以及启动多次稳定中的稳定剂浓度来大部分调节。受益于这种稳定的结构和表面上有许多乙烯基的存在; HIMC Organicica微球具有非常高的疏水性(具有大于160的水接触角),其允许它们稳定具有优异稳定性和高机械稳健性的液体大理石。由于其强催化剂,在HIMC有机玻璃中的AG纳米丙糖苷使AG / HIMC-乙烯基有机硅基微球基液体大理石成为一种有效的催化力学反应器,在10分钟内通过NABH4实现了MB对Leuco亚甲基蓝的完全降解。这项工作的结果可以为易于,低成本的HIMC微球提供一些指导,其具有能够是金属纳米颗粒或其他官能化化合物的优异支持者,用于感应,光电子和催化作用。

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  • 作者单位

    Shaanxi Normal Univ Sch Chem &

    Chem Engn Minist Educ Key Lab Appl Surface &

    Colloid Chem Xian 710119 Peoples R China;

    Shaanxi Normal Univ Sch Chem &

    Chem Engn Minist Educ Key Lab Appl Surface &

    Colloid Chem Xian 710119 Peoples R China;

    Shaanxi Normal Univ Sch Chem &

    Chem Engn Minist Educ Key Lab Appl Surface &

    Colloid Chem Xian 710119 Peoples R China;

    Shaanxi Normal Univ Sch Chem &

    Chem Engn Minist Educ Key Lab Appl Surface &

    Colloid Chem Xian 710119 Peoples R China;

    Shaanxi Normal Univ Sch Chem &

    Chem Engn Minist Educ Key Lab Appl Surface &

    Colloid Chem Xian 710119 Peoples R China;

    Shaanxi Normal Univ Sch Chem &

    Chem Engn Minist Educ Key Lab Appl Surface &

    Colloid Chem Xian 710119 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;化学;
  • 关键词

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