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Design of Dual Purpose Fe-metallogel for Magnetic Refrigeration and Fabrication of Schottky Barrier Diode

机译:Design of Dual Purpose Fe-metallogel for Magnetic Refrigeration and Fabrication of Schottky Barrier Diode

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摘要

The impetus for the present work was to design multifunctional inorganic materials that can be utilized in their original as-synthesized state of the matter. Accordingly, we have successfully designed a benzene-tricarboxylic acid based dual-purpose Fe-metallogel that can be used as an efficient material for cryogenic magnetic cooling as well as electronic device fabrication as Schottky barrier diode in their original gel state. The metallogel shows remarkable mechanical strength, self-sustainability and thixotropic behaviour. The gel sample has been thoroughly characterized using IR, UV-Vis spectroscopy, SEM, TEM, AFM techniques, XPS and Mossbauer spectroscopy. The porous nature, which forms the basis of the current gel based MCE study and SBD fabrication, was confirmed with gas sorption data. The porous metallogel network with by-default entrapped anion and protic solvents of the fabricated electrical device provides an excellent platform for charge transportation with a corroborating conductivity value of 4.53 ×10~(-6) Sm~(-1). As if to complement the notion of multifunctional material, the magnetic studies on the Fe-gel show significant cryogenic magnetic cooling behaviour. The theoretical result calculated using DFT are found to be highly consistent with the experimental results of the metallogel. Furthermore, we have evaluated the potential of the compound as a fuel cell membrane with detailed proton conductivity measurements on the xerogel, showing an encouraging value of 4.58×104S/ cmat 95% relative humidity and 75 °C temperature.
机译:目前的工作是设计的动力多功能无机材料,可以利用原有as-synthesized状态的事。设计了一个基于benzene-tricarboxylic酸两用Fe-metallogel可以用作高效的低温磁制冷材料以及电子设备制造肖特基势垒二极管在原来的凝胶状态。力量,自我维生和触变的行为。利用红外、紫外可见光谱,扫描电镜,TEM、AFM技术XPS和穆斯堡尔光谱学。当前基于凝胶的多国评价基础研究和作为制造、确认与气体吸附数据。默认情况下裹入离子和质子溶剂制造电子设备提供了一个优秀的平台,负责运输一个确凿的电导率值为4.53Sm×10 ~(6)~(1)。多功能材料,磁性研究在低温磁Fe-gel提速冷却行为。用DFT计算高度与实验结果一致metallogel。潜力的化合物作为燃料电池膜提供详细的质子电导率测量干凝胶,显示一个令人鼓舞的价值4.58×104 s / cmat 95%相对湿度和75°C温度。

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  • 来源
    《Chemistry Select》 |2022年第41期|共15页
  • 作者单位

    School of Chemical Science Indian Association for the Cultivation of Science, 2A & 2B, Raja S. C. Mullick Road, Kolkata-700032, West Bengal, India;

    Department of Physics Jadavpur University Jadavpur, Kolkata 700 032 India;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
  • 关键词

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