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质子传导对肽介电性质的影响。

Effects of proton conduction on dielectric properties of peptides.

作者信息

Sung Taehoon, Namgung Seok Daniel, Lee Jaehun, Choe Ik Rang, Nam Ki Tae, Kwon Jang-Yeon

机构信息

School of Integrated Technology, Yonsei University Incheon 21983 Republic of Korea.

Yonsei Institute of Convergence Technology, Yonsei University Incheon 21983 Republic of Korea

出版信息

RSC Adv. 2018 Oct 3;8(59):34047-34055. doi: 10.1039/c8ra06121a. eCollection 2018 Sep 28.

Abstract

Peptides have been overlooked for their use in the field of electronics, even though they are one of the most commonly found bio-induced materials, and are not only easy to mass-produce but also exhibit a high dielectric constant. Additionally, unlike proteins, which are gaining considerable interest with materials researchers, peptides are much simpler, rendering their original characteristics easier to maintain without significant alteration of their structure. On the other hand, proteins tend to deform due to their susceptibility to environmental changes. Combining such superb dielectric properties with their relatively stable nature, peptides could be utilized as a component of electronic devices ranging from basic capacitors to more complex thin-film transistors. In this paper, a peptide chain (YYACAYY) composed of tyrosine, alanine, and cysteine was extensively studied using an impedance analyzer to determine its innate charge movement mechanism in order to extend our understanding of the electric properties of peptides. The movement of mobile protons inside the peptide insulator was found to be the source of the high relative permittivity of the peptide insulator, and the dielectric constant of the peptide insulator was found to be over 17 in humid conditions. By widening the understanding of the dielectric properties of the peptide insulator, it is expected that the peptide can be further utilized as an insulator in various electronic devices.

摘要

尽管肽是最常见的生物诱导材料之一,不仅易于大规模生产,而且具有高介电常数,但它们在电子领域的应用一直被忽视。此外,与正引起材料研究人员广泛关注的蛋白质不同,肽要简单得多,其原始特性在结构无显著改变的情况下更易于保持。另一方面,蛋白质由于易受环境变化影响而容易变形。将如此出色的介电特性与相对稳定的性质相结合,肽可作为从基本电容器到更复杂薄膜晶体管等电子设备的组件。在本文中,使用阻抗分析仪对由酪氨酸、丙氨酸和半胱氨酸组成的肽链(YYACAYY)进行了广泛研究,以确定其固有的电荷移动机制,从而扩展我们对肽电性质的理解。发现肽绝缘体内部移动质子的移动是肽绝缘体高相对介电常数的来源,并且在潮湿条件下肽绝缘体的介电常数超过17。通过拓宽对肽绝缘体介电性质的理解,预计肽可进一步用作各种电子设备中的绝缘体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc8b/9086689/79131aec64fa/c8ra06121a-f1.jpg

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