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具有可调催化和磁性能的中空 FePt 纳米链的定向组装。

Oriented-assembly of hollow FePt nanochains with tunable catalytic and magnetic properties.

机构信息

Department of Physics, Beihang University, Beijing 100191, P. R. China and University of Science and Technology Beijing, Beijing 100083, P. R. China.

University of Science and Technology Beijing, Beijing 100083, P. R. China.

出版信息

Nanoscale. 2016 Jun 2;8(22):11432-40. doi: 10.1039/c6nr00883f.

Abstract

Hollow nanoparticles with large surface areas exhibit a lot of advantages for applications such as catalysis and energy storage. Furthermore, their performance can be manipulated by their deliberate assemblies. Dispersive hollow FePt nanospheres have been assembled into one-dimensional hollow FePt nanochains under the magnetic fields at room temperature. Based on the activation of galvanic replacement at different reaction stages, the size of hollow FePt nanochains can be deliberately manipulated varying from 20 nm to 300 nm, together with the length changing from 200 nm to 10 μm. The competition between movement of paramagnetic Fe(3+) ions and shape recovering due to thermal fluctuations plays a critical effect on the structure of contact area between hollow nanospheres, leading to perforative structures. Compared with commercial Pt/C, well aligned hollow FePt nanochains show greatly enhanced catalytic activities in the methanol oxidation reaction (MOR) due to more favorable mass flow. Magnetic measurements indicate that the magnetic properties including Curie temperature and saturation magnetization can be tuned by the control of the size and shape of hollow nanochains.

摘要

具有大表面积的中空纳米粒子在催化和储能等应用中表现出许多优势。此外,它们的性能可以通过它们的故意组装来操纵。在室温下的磁场作用下,分散的中空 FePt 纳米球被组装成一维中空 FePt 纳米链。基于不同反应阶段的电置换反应的激活,可以故意操纵中空 FePt 纳米链的尺寸,从 20nm 变化到 300nm,同时长度从 200nm 变化到 10μm。顺磁 Fe(3+)离子的移动与热波动引起的形状恢复之间的竞争对中空纳米球之间接触区域的结构起着至关重要的作用,导致了穿孔结构。与商业 Pt/C 相比,由于更有利的质量流,排列良好的中空 FePt 纳米链在甲醇氧化反应(MOR)中表现出大大增强的催化活性。磁性测量表明,包括居里温度和饱和磁化强度在内的磁性能可以通过控制中空纳米链的尺寸和形状来进行调节。

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