论文标题

使用小角度散射指导功能磁性纳米颗粒设计

Using small-angle scattering to guide functional magnetic nanoparticle design

论文作者

Honecker, Dirk, Bersweiler, Mathias, Erokhin, Sergey, Berkov, Dmitry, Chesnel, Karine, Venero, Diego Alba, Qdemat, Asma, Disch, Sabrina, Jochum, Johanna K., Michels, Andreas, Bender, Philipp

论文摘要

磁性纳米颗粒为各种技术,生物医学或环境应用提供了独特的潜力,这得益于其磁性特性的尺寸,形状和材料依赖性可调性。为了优化特定应用的颗粒,至关重要的是将其性能与其结构和磁性特性相关。这篇综述介绍了小角度X射线和中子散射技术的优势,用于实现磁性纳米粒子及其在介质大小的详细多尺度表征,从1到几百纳米纳米范围,并分辨率为几百纳米。 X射线和中子都允许确定结构特性,例如多层和3D组件中的粒子形态或粒子排列。另外,磁散射贡献可以检索纳米颗粒的内部磁化谱以及由密集组件内相互作用引起的粒子间矩相关。大多数测量都用于确定时间平均的集成特性,此外,还存在允许在各个时间表上访问粒子和自旋动力学的高级小角度散射技术。在这篇综述中,我们专注于常规的小角度X射线和中子散射(SAX和SANS),X射线和中子反射测定法,固定的saxs and Sans,X射线共振磁磁散射以及中子自旋回声相光谱学技术。对于每种技术,我们都提供一般概述,介绍最新的科学结果,并讨论其优势和样本要求。最后,我们对未来的小角度散射实验(尤其是与微型磁模拟结合)如何有助于优化磁性纳米颗粒在特定应用中的性能进行优化的观点。

Magnetic nanoparticles offer unique potential for various technological, biomedical, or environmental applications thanks to the size-, shape- and material-dependent tunability of their magnetic properties. To optimize particles for a specific application, it is crucial to interrelate their performance with their structural and magnetic properties. This review presents the advantages of small-angle X-ray and neutron scattering techniques for achieving a detailed multiscale characterization of magnetic nanoparticles and their ensembles in a mesoscopic size range from 1 to a few hundred nanometers with nanometer resolution. Both X-rays and neutrons allow the ensemble-averaged determination of structural properties, such as particle morphology or particle arrangement in multilayers and 3D assemblies. Additionally, the magnetic scattering contributions enable retrieving the internal magnetization profile of the nanoparticles as well as the inter-particle moment correlations caused by interactions within dense assemblies. Most measurements are used to determine the time-averaged ensemble properties, in addition advanced small-angle scattering techniques exist that allow accessing particle and spin dynamics on various timescales. In this review, we focus on conventional small-angle X-ray and neutron scattering (SAXS and SANS), X-ray and neutron reflectometry, gracing-incidence SAXS and SANS, X-ray resonant magnetic scattering, and neutron spin-echo spectroscopy techniques. For each technique, we provide a general overview, present the latest scientific results, and discuss its strengths as well as sample requirements. Finally, we give our perspectives on how future small-angle scattering experiments, especially in combination with micromagnetic simulations, could help to optimize the performance of magnetic nanoparticles for specific applications.

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