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介观自组装在埃洛石纳米管复合材料中的应用。

Interfacial Self-Assembly in Halloysite Nanotube Composites.

机构信息

Institute for Micromanufacturing , Louisiana Tech University , Ruston , Louisiana 71272 , United States.

I. Gubkin Russian State University of Oil and Gas , Moscow 119991 , Russia.

出版信息

Langmuir. 2019 Jul 2;35(26):8646-8657. doi: 10.1021/acs.langmuir.8b04313. Epub 2019 Feb 8.

Abstract

A self-assembly of clay nanotubes in functional arrays for the production of organized organic/inorganic heterostructures is described. These 50-nm-diameter natural alumosilicate nanotubes are biocompatible. Halloysite allows for 10-20 wt % chemical/drug loading into the inner lumen, and it gives an extended release for days and months (anticorrosion, self-healing, flame-retardant, antifouling, and antibacterial composites). The structured surfaces of the oriented nanotube micropatterns enhance interactions with biological cells, improving their capture and inducing differentiation in stem cells. An encapsulation of the cells with halloysite enables control of their growth and proliferation. This approach was also developed for spill petroleum bioremediation as a synergistic process with Pickering oil emulsification. We produced 2-5-nm-diameter particles (Au, Ag, Pt, Co, Ru, Cu-Ni, FeO, ZrO, and CdS) selectively inside or outside the aluminosilicate clay nanotubes. The catalytic hydrogenation of benzene and phenol, hydrogen production, impacts of the metal core-shell architecture, the metal particle size, and the seeding density were optimized for high-efficiency processes, exceeding the competitive industrial formulations. These core-shell mesocatalysts are based on a safe and cheap natural clay nanomaterial and may be scaled up for industrial applications.

摘要

描述了一种用于制备有序有机/无机杂化结构的粘土纳米管功能阵列的自组装。这些直径为 50nm 的天然铝硅酸盐纳米管具有生物相容性。埃洛石允许将 10-20wt%的化学/药物负载到内腔中,并能持续数天和数月释放(防腐、自修复、阻燃、防污和抗菌复合材料)。定向纳米管微图案的结构化表面增强了与生物细胞的相互作用,提高了对其的捕获能力,并诱导干细胞分化。埃洛石对细胞的封装可以控制其生长和增殖。这种方法还被开发用于溢油的生物修复,作为与 Pickering 油乳化协同的过程。我们在铝硅酸盐粘土纳米管内部或外部选择性地生成了 2-5nm 直径的颗粒(金、银、铂、钴、钌、铜-镍、氧化铁、氧化锆和硫化镉)。苯和苯酚的催化加氢、氢气生成、金属核壳结构、金属颗粒尺寸和种子密度的影响都得到了优化,以实现高效的工艺,超过了竞争的工业配方。这些核壳介孔催化剂基于安全且廉价的天然粘土纳米材料,可以扩大规模用于工业应用。

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