Himstedt Rasmus, Baabe Dirk, Wesemann Christoph, Bessel Patrick, Hinrichs Dominik, Schlosser Anja, Bigall Nadja C, Dorfs Dirk
Institute of Physical Chemistry and Electrochemistry, Leibniz Universität Hannover, Callinstraße 3A, 30167 Hannover, Germany.
Laboratory of Nano and Quantum Engineering, Leibniz Universität Hannover, Schneiderberg 39, 30167 Hannover, Germany.
J Phys Chem C Nanomater Interfaces. 2021 Dec 9;125(48):26635-26644. doi: 10.1021/acs.jpcc.1c08412. Epub 2021 Nov 23.
The presented work shows a synthesis route to obtain nanoparticles of the hexagonal α-NiS phase and core-shell particles where the same material is grown onto previously prepared Au seeds. In the bulk, this nickel sulfide phase is known to exhibit a metal-insulator type phase transition (MIT) at 265 K which drastically alters its electrical conductivity. Since the produced nanoparticles show a localized surface plasmon resonance (LSPR) in the visible range of the electromagnetic spectrum, the development of their optical properties depending on the temperature is investigated. This is the first time an LSPR of colloidal nanoparticles is monitored regarding such a transition. The results of UV-vis absorbance measurements show that the LSPR of the particles can be strongly and reversibly tuned by varying the temperature. It can be switched off by cooling the nanoparticles and switched on again by reheating them above the transition temperature. Additional to the phase transition, the temperature-dependent magnetic susceptibility of α-NiS and Au-NiS nanoparticles suggests the presence of different amounts of uncompensated magnetic moments in these compounds that possibly affect the optical properties and may cause the observed quantitative differences in the LSPR response of these materials.
所展示的工作展示了一种合成路线,可获得六方α-NiS相的纳米颗粒以及核壳颗粒,其中相同材料生长在先前制备的金种子上。在块状材料中,已知这种硫化镍相在265 K时会发生金属-绝缘体类型的相变(MIT),这会极大地改变其电导率。由于所制备的纳米颗粒在电磁光谱的可见光范围内表现出局域表面等离子体共振(LSPR),因此研究了其光学性质随温度的变化。这是首次针对这种相变监测胶体纳米颗粒的LSPR。紫外-可见吸收测量结果表明,通过改变温度可以强烈且可逆地调节颗粒的LSPR。通过冷却纳米颗粒可以将其关闭,再次加热至转变温度以上则可以再次开启。除了相变之外,α-NiS和Au-NiS纳米颗粒的温度依赖性磁化率表明,这些化合物中存在不同数量的未补偿磁矩,这可能会影响光学性质,并可能导致这些材料在LSPR响应中观察到的定量差异。