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In situ thermal synthesis of molybdenum oxide nanocrystals in thermoresponsive microgels

机译:在热响应微凝胶中的氧化钼纳米晶体中的原位热合成

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摘要

In situ formation of nanocrystals within thermoresponsive microgels has become a significant technology in the fields of catalysis and biomedicine to fabricate multifunctional hybrid nanostructures. Usually, the room temperature or cooler was set to control the formation of nanocrystals using microgels as template in such process. Here, the relatively higher temperature was used to synthesize molybdenum oxide nanocrystals where the poly (N-vinyl caprolactam) microgels were found to work as both the stabilizer and the template. Specifically, ethanol was added in the solution of the microgels to raise their volume phase transition temperature (VPTT). Later, a modified hydrothermal process was performed at 70 degrees C with precursor molybdic acid concentrated in the microgels matrix through the hydrogen bond between molybdic acid and N-vinyl caprolactam units. 2D nanoflakes, nanorods and nanoplatelets of molybdenum oxide were successfully synthesized. Specially, the microgels with the crosslinked degree of 2% exhibited well hybrid with controlled sizes and ideal confine of the molybdenum oxide nanoplatelets within microgels, along with strong photoluminescence intensity. These results emphasized the feasibility of poly(N-vinyl caprolactam) microgels as template and stabilizer at high temperature and provided a novel synthesis strategies for hybrid microgels applicable in wide areas of nanotechnology from catalysis, sensing to therapy.
机译:原位形成热响应微凝块内的纳米晶体中已成为催化和生物医学领域的重要技术,以制造多官能杂合纳米结构。通常,将室温或冷却器设定为在这种方法中使用微凝胶作为模板控制纳米晶体的形成。这里,使用相对较高的温度来合成氧化钼纳米晶体,其中发现聚(N-乙烯基己内酰胺)微凝胶作为稳定剂和模板工作。具体地,在微凝胶的溶液中加入乙醇以提高其体积相转变温度(VPTT)。后来,通过钼酸和N-乙烯基己内酰胺单元之间的氢键在微凝胶基质中浓缩的前体钼酸在70℃下进行改性水热法。 2D纳米薄片,纳米棒和氧化钼的纳米粒子被成功地合成。特别是,具有交联2%的微凝胶具有良好的杂交,其具有微凝块内的控制尺寸和钼氧化物纳米片的理想限制,以及强烈的光致发光强度。这些结果强调了聚(N-乙烯基己内酰胺)微凝胶作为模板和稳定剂在高温下的可行性,并为催化在催化作用的纳米技术范围内的杂交微凝胶的新合成策略提供了一种新的合成策略。

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