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Hollow-structured hematite particles derived from layered iron (hydro)oxyhydroxide-surfactant composites

机译:层状(氢)羟基氧化铁-表面活性剂复合材料衍生的空心结构赤铁矿颗粒

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Hollow-structured hematite particles (HSHPs) with porosity in the nanometer size range have been successfully prepared using a one-step solvothermal process. A detailed time course study revealed that these HSHPs formed through a coupled dissolution and surface recrystallization process, in which the preformed hematite nanoparticles firstly oriented-aggregated into spindle-like particles with amorphous cores, then recrystallization occurred on the surfaces of the particles and was supplied by dissolution of the amorphous cores, which led to the final HSHPs. The as-prepared HSHPs performed remarkable catalytic activity in the polymerization reaction of benzyl chloride. These HSHPs might not only lead to novel technological applications in areas ranging from medicine to materials science, but also would shed more light on the attachment growth process of inorganic nanostructures with hollow interiors. [References: 42]
机译:使用一步溶剂热法成功制备了孔隙度在纳米尺寸范围内的空心结构赤铁矿颗粒(HSHP)。详尽的时间过程研究表明,这些HSHP是通过溶解和表面再结晶的耦合过程形成的,其中预先形成的赤铁矿纳米颗粒首先取向聚集成具有非晶核的纺锤状颗粒,然后在颗粒表面发生重结晶并提供通过溶解无定形核,从而形成最终的HSHP。所制备的HSHP在苄基氯的聚合反应中表现出显着的催化活性。这些HSHP不仅可能导致从医学到材料科学等领域的新技术应用,而且还将使具有空心内部结构的无机纳米结构的附着生长过程更加引人注目。 [参考:42]

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