Li+3离子束辐照对4-n(己氧基)苯甲酸热力学性质的影响

Satendra Kumar, R. Verma, R. Dhar, A. Tripathi
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引用次数: 1

摘要

研究了Li离子束辐照对液晶材料4-n(己氧基)苯甲酸(HOBA)热力学性质的影响。在室温下,以3na电流辐照(1010、1011、1012、1013离子∕cm2)的粒子束照射材料的结晶相。经辐照的纯液晶材料具有I-N-Cr相序。用差示扫描量热计(DSC)对纯物质和辐照物质进行了研究。对纯材料和辐照材料的热力学研究表明,与纯材料相比,Li离子束辐照降低了所有的转变温度。辐照物质的平均跃迁焓和熵比纯物质的平均跃迁焓和熵增加。研究了Li离子束辐照对液晶材料4-n(己氧基)苯甲酸(HOBA)热力学性质的影响。在室温下,以3na电流辐照(1010、1011、1012、1013离子∕cm2)的粒子束照射材料的结晶相。经辐照的纯液晶材料具有I-N-Cr相序。用差示扫描量热计(DSC)对纯物质和辐照物质进行了研究。对纯材料和辐照材料的热力学研究表明,与纯材料相比,Li离子束辐照降低了所有的转变温度。辐照物质的平均跃迁焓和熵比纯物质的平均跃迁焓和熵增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Changes in the thermodynamic properties of 4-n(hexyloxy) benzoic acid by Li+3 ion beam irradiation
Li ion beam irradiation persuaded modifications in the thermodynamic properties of liquid crystalline material 4-n (hexyloxy) benzoic acid (HOBA) have been investigated. The irradiation has been carried out by a pelletron beam using 3 nA current at fluences (1010, 1011, 1012, 1013 ions∕cm2) at room temperature in the crystalline phase of the material. The pure and irradiated liquid crystalline material has a phase sequence of I-N-Cr. The pure and irradiated materials were explored using differential scanning calorimeter (DSC). Thermodynamic studies of the pure and irradiated materials reveal that all the transition temperature is depressed as compared to those of pure materials by the Li ion beam irradiation. The average transition enthalpies and entropies of the irradiated materialare increased as compared to those of purematerial.Li ion beam irradiation persuaded modifications in the thermodynamic properties of liquid crystalline material 4-n (hexyloxy) benzoic acid (HOBA) have been investigated. The irradiation has been carried out by a pelletron beam using 3 nA current at fluences (1010, 1011, 1012, 1013 ions∕cm2) at room temperature in the crystalline phase of the material. The pure and irradiated liquid crystalline material has a phase sequence of I-N-Cr. The pure and irradiated materials were explored using differential scanning calorimeter (DSC). Thermodynamic studies of the pure and irradiated materials reveal that all the transition temperature is depressed as compared to those of pure materials by the Li ion beam irradiation. The average transition enthalpies and entropies of the irradiated materialare increased as compared to those of purematerial.
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