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首页> 外文期刊>Nanoscale >Iron oxide nanoparticle layer templated by polydopamine spheres: a novel scaffold toward hollow-mesoporous magnetic nanoreactors
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Iron oxide nanoparticle layer templated by polydopamine spheres: a novel scaffold toward hollow-mesoporous magnetic nanoreactors

机译:氧化铁纳米颗粒层模板化polydopamine球体:支架的方向hollow-mesoporous磁nanoreactors

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摘要

Superparamagnetic iron oxide nanoparticle layers with high packing density and controlled thickness were in situ deposited on metal-affinity organic templates (polydopamine spheres), via one-pot thermal decomposition. The as synthesized hybrid structure served as a facile nano-scaffold toward hollow-mesoporous magnetic carriers, through surfactant-assisted silica encapsulation and its subsequent calcination. Confined but accessible gold nanoparticles were successfully incorporated into these carriers to form a recyclable catalyst, showing quick magnetic response and a large surface area (642.5 m(2) g(-1)). Current nano-reactors exhibit excellent catalytic performance and high stability in reduction of 4-nitrophenol, together with convenient magnetic separability and good reusability. The integration of compact iron oxide nanoparticle layers with programmable polydopamine templates paves the way to fabricate magnetic-response hollow structures, with high permeability and multi-functionality.
机译:超顺磁性氧化铁纳米颗粒层高存储密度和控制厚度是原位沉积(polydopamine metal-affinity有机模板球体),通过锅热分解。合成混合结构担任简单nano-scaffold向hollow-mesoporous磁性载体,通过surfactant-assisted硅封装及其后续煅烧。纳米粒子被成功纳入这些航空公司形成一个可回收的催化剂,显示快速磁响应和一个大面积(642.5米(2)g(1))。nano-reactors表现出优良的催化性能和高稳定性降低磁4-nitrophenol和方便可分性和良好的可重用性。紧凑的氧化铁纳米颗粒的集成层与可编程polydopamine模板制造magnetic-response铺平了道路空心结构,高的磁导率多功能化。

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