Enhancing the electrical, optical, and magnetic characteristics of DNA thin films through Mn<SUP>2+</SUP> fortification

  • Kesama, Mallikarjuna Reddy
  • Yun, Byung Kil
  • Dugasani, Sreekantha Reddy
  • Jung, Jong Hoon
  • Park, Sung Ha
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초록

DNA is one of the most propitious biomaterials for use in nanoscience and nanotechnology because of its exceptional characteristics, i.e. self-assembly and sequence-programmability. In this study, we fabricate sequence-designed double-crossover (DX) DNA lattices and naturally available salmon DNA (SDNA) thin films modified with the transition metal ion Mn2+. Phase transition of DX DNA lattices from crystalline to amorphous form controlled by varying the concentration of Mn2+ is discussed and a critical transition concentration ([Mn2+]c) is estimated. In addition, the electrical, optical, and magnetic properties of Mn2+-modified SDNA thin films including current, absorbance, photoluminescence, the X-ray photoelectron spectrum, and magnetization are studied to understand their conductivity, binding modes, energy transfer characteristics, chemical composition, and magnetism. Interestingly, the physical values such as the maximum current and photoluminescence, and the minimum absorbance, occur at around [Mn2+]c =4mM, which may be due to the optimal incorporation of Mn2+ into the SDNA. The magnetization and susceptibility of SDNA thin films with Mn2+, served as magnetic dipoles, are studied under different temperature and magnetic field. The magnetization of SDNA thin films with [Mn2+]c shows an S-shaped curve, indicating ferromagnetism. (C) 2018 Elsevier B.V. All rights reserved.

키워드

DNA latticeDNA thin filmManganese ionElectrical propertyOptical characteristicsMagnetic propertyCHARGE-TRANSPORTIONMONOLAYERSDAMAGE
제목
Enhancing the electrical, optical, and magnetic characteristics of DNA thin films through Mn<SUP>2+</SUP> fortification
저자
Kesama, Mallikarjuna ReddyYun, Byung KilDugasani, Sreekantha ReddyJung, Jong HoonPark, Sung Ha
DOI
10.1016/j.colsurfb.2018.04.023
발행일
2018-07
유형
Article
저널명
Colloids and Surfaces B: Biointerfaces
167
페이지
197 ~ 205