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通过金属-尿素添加剂的嵌段共聚物定向自组装制备介孔氮氧化钛整体材料。

Mesoporous Titanium Oxynitride Monoliths from Block Copolymer-Directed Self-Assembly of Metal-Urea Additives.

作者信息

Li Yun, Horia Raymond, Tan Wei Xin, Larbaram Nathawat, Sasangka Wardhana A, Manalastas William, Madhavi Srinivasan, Tan Kwan W

机构信息

School of Materials Science and Engineering, Nanyang Technological University, Singapore 639798, Singapore.

Low Energy Electronic Systems, Singapore-MIT Alliance for Research and Technology Centre, Singapore 138602, Singapore.

出版信息

Langmuir. 2020 Sep 15;36(36):10803-10810. doi: 10.1021/acs.langmuir.0c01729. Epub 2020 Aug 28.

Abstract

This report describes a simple one-pot soft-templating and ammonolysis-free approach to synthesize mesoporous crystalline titanium oxynitride by combining block copolymer-directed self-assembly with metal sol and urea precursors. The Pluronic F127 triblock copolymer was employed to structure-direct titanium-oxo-acetate sol nanoparticles and urea-formaldehyde into ordered hybrid mesostructured monoliths. The hybrid composites were directly converted into mesoporous crystalline titanium oxynitride and retained macroscale monolithic integrity up to 800 °C under nitrogen. Notably, the urea-formaldehyde additive provided nitrogen and rigid support to the inorganic mesostructure during crystallization. The resultant mesoporous titanium oxynitride exhibited good electrochemical catalytic activity toward hydrogen evolution reaction in 1 M KOH aqueous medium under applied bias. Our results suggest an inexpensive and safe pathway to generate ordered mesoporous crystalline metal oxynitride structures suitable for catalyst and energy-storage applications.

摘要

本报告描述了一种简单的一锅法软模板和无氨解方法,通过将嵌段共聚物定向自组装与金属溶胶和尿素前驱体相结合来合成介孔结晶氮氧化钛。采用Pluronic F127三嵌段共聚物将钛氧乙酸盐溶胶纳米颗粒和尿素-甲醛构建成有序的混合介观结构整体。在氮气气氛下,这些混合复合材料直接转化为介孔结晶氮氧化钛,并在高达800°C的温度下保持宏观整体完整性。值得注意的是,尿素-甲醛添加剂在结晶过程中为无机介观结构提供了氮和刚性支撑。所得的介孔氮氧化钛在施加偏压的情况下,在1 M KOH水性介质中对析氢反应表现出良好的电化学催化活性。我们的结果表明了一条廉价且安全的途径,可生成适用于催化剂和储能应用的有序介孔结晶金属氮氧化物结构。

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