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通过掺杂 FeO 纳米粒子对 EHPDB 物理性能的改性(第二部分)。

Modifications of EHPDB Physical Properties through Doping with FeO Nanoparticles (Part II).

机构信息

Faculty of Physics, Astronomy and Applied Computer Science, Institute of Physics, Jagiellonian University, 30-348 Kraków, Poland.

Department of Chemistry, School of Science, The University of Tokyo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

Int J Mol Sci. 2021 Dec 21;23(1):50. doi: 10.3390/ijms23010050.

Abstract

The aim of our study was to analyze the influence of various concentrations of -FeO nanoparticles on the physical properties of the liquid crystalline ferroelectric SmC* phase, as well as to check the effect of introducing nanoparticles in the LC matrix on their properties in the prepared five nanocomposites. UV-vis spectroscopy showed that the admixture reduced the absorption of nanocomposites in the UV range, additional absorption bands appeared, and all nanocomposites were transparent in the range of 500-850 nm. The molecular dynamics in particular phases of the nanocomposites were investigated by the dielectric spectroscopy method, and it was found that nanoparticles caused a significant increase in the dielectric constant at low frequencies, a strong modification of the dielectric processes in the SmC* phase, and the emergence of new relaxation processes for the highest dopant concentrations. SQUID magnetometry allowed us to determine the magnetic nature of the nanoparticles used, and to show that the blocked state of nanoparticles was preserved in nanocomposites (hysteresis loops were also registered in the ferroelectric SmC* phase). The dependence of the coercive field on the admixture concentration and the widening of the hysteresis loop in nanocomposites in relation to pure nanoparticles were also found. In turn, the FT-MIR spectroscopy method was used to check the influence of the impurity concentration on the formation/disappearance or modification of the absorption bands, and the modification of both the FWHM and the maximum positions for the four selected vibrations in the MIR range, as well as the discontinuous behavior of these parameters at the phase transitions, were found.

摘要

我们的研究目的是分析不同浓度的 -FeO 纳米粒子对液晶铁电 SmC相物理性质的影响,并检查在 LC 基质中引入纳米粒子对制备的五种纳米复合材料中它们性质的影响。紫外可见光谱表明,混合物降低了纳米复合材料在紫外范围内的吸收,出现了额外的吸收带,所有纳米复合材料在 500-850nm 范围内都是透明的。通过介电谱方法研究了纳米复合材料中特定相的分子动力学,发现纳米粒子在低频下导致介电常数显著增加,强烈改变了 SmC相的介电过程,并出现了新的弛豫过程对于最高掺杂浓度。SQUID 磁强计允许我们确定所使用的纳米粒子的磁性,并表明纳米粒子的阻挡状态在纳米复合材料中得以保留(也在铁电 SmC*相中记录了滞后回线)。还发现矫顽场与混合物浓度的依赖关系以及纳米复合材料中滞后回线的加宽与纯纳米粒子有关。反过来,FT-MIR 光谱法用于检查杂质浓度对吸收带的形成/消失或修饰的影响,以及在 MIR 范围内四个选定振动的 FWHM 和最大位置的修饰,以及这些参数在相变处的不连续行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70f6/8744552/5c2bdca9912b/ijms-23-00050-g001.jpg

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