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Direct-Continuous Preparation of Nanostructured Titania-Silica Using Surfactant-Free Non-Scaffold Rice Starch Template

机译:无表面活性剂的非脚手架米淀粉模板直接连续制备纳米结构的二氧化钛-二氧化硅

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摘要

The conventional synthesis route of nanostructured titania-silica (Ti-SiNS) based on sol-gel requires the use of a surfactant-type template that suffers from hazardous risks, environmental concerns, and a tedious stepwise process. Alternatively, biomaterials have been introduced as an indirect template, but still required for pre-suspended scaffold structures, which hinder their practical application. Herein, we report an easy and industrially viable direct-continuous strategy for the preparation of Ti-SiNS from nanostructured-silica (SiNS) using a hydrolyzed rice starch template. This strategy fits into the conventional industrial process flow, as it allows starch to be used directly in time-effective and less complicated steps, with the potential to upscale. The formation of Ti-SiNS is mainly attributed to Ti attachment in the SiNS frameworks after the polycondensation of the sol-gel composition under acidic-media. The SiNS had pseudo-spherical morphology (nanoparticles with the size of 13 to 22 nm), short order crystal structure (amorphous) and high surface area (538.74 m2·g−1). The functionalized SiNS into Ti-SiNS delivered considerable catalytic activity for epoxidation of 1-naphtol into 1,4-naphthoquinone. The described direct-continuous preparation shows great promise for a cheap, green, and efficient synthesis of Ti-SiNS for advanced applications.
机译:基于溶胶-凝胶的纳米结构二氧化钛-二氧化硅(Ti-SiNS)的常规合成路线需要使用表面活性剂型模板,该模板具有危险性,环境问题和繁琐的逐步过程。替代地,生物材料已经被引入作为间接模板,但是仍然需要预先悬挂的支架结构,这阻碍了它们的实际应用。本文中,我们报告了一种使用水解大米淀粉模板从纳米结构二氧化硅(SiNS)制备Ti-SiNS的简便且工业可行的直接连续策略。该策略适合常规的工业流程,因为它可以将淀粉直接用于时间有效且较不复杂的步骤中,并且具有扩大规模的潜力。 Ti-SiNS的形成主要归因于在酸性介质下溶胶-凝胶组合物的缩聚反应后,Ti在SiNS骨架中的附着。 SiNS具有伪球形形态(尺寸为13至22 nm的纳米粒子),短阶晶体结构(无定形)和高表面积(538.74 m 2 ·g −1 )。将功能化的SiNS转变为Ti-SiNS,可将1-萘酚环氧化为1,4-萘醌的催化活性很高。所描述的直接连续制备方法显示出廉价,绿色,高效地合成Ti-SiNS用于高级应用的巨大前景。

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