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DNA hybrid dielectric film devices for energy storage and bioelectronics applications

机译:用于储能和生物电化应用的DNA混合介电膜装置

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DNA biopolymer hybrids have been investigated for energy storage applications and also as potential high k gate dielectrics in bioelectronics applications such as BioFETs. DNA-based hybrid films incorporating sol-gel-derived ceramics have shown strong promise as insulating dielectrics for high voltage capacitor applications. Our studies of DNA-CTMA complex/sol-gel hybrid thin film devices have demonstrated reproducibility and stability in temperature-and frequency-dependent dielectric properties as well as reliability in DC voltage breakdown measurements, attaining values consistently in the 300 - 350 V/um range. We have also investigated DNA-inorganic hybrids by ex situ blending of aqueous solutions of DNA with high k ceramics such as BaTi03 and TiO_2. These systems are currently being investigated as potential gate dielectrics for BioFETs by virtue of their relatively high dielectric constant, high DC electrical resistivity, and lower leakage currents than pristine DNA. Functionally layered devices have also been designed, fabricated and characterized to determine any added benefit in dielectric applications. The electrical/dielectric characteristics of DNA and DNA-CTMA with sol-gel-derived ceramics, high k ceramic fillers, and in layered devices were examined to determine their effect on vital dielectric parameters for energy storage and bioelectronics applications.
机译:已经研究了DNA生物聚合物杂交物用于储能应用,也是生物电子应用中的潜在高k栅极电介质,如生物铸素。掺入溶胶 - 凝胶衍生陶瓷的基于DNA的混合膜已经表现为高压电容器应用的绝缘电介质。我们对DNA-CTMA复合物/溶胶 - 凝胶混合薄膜器件的研究已经证明了温度和频率依赖性介电性能的再现性和稳定性,以及直流电压击穿测量的可靠性,在300-350 V / um中始终如一地达到值范围。我们还通过使用高k陶瓷的DNA水溶液(如BATIO3和TiO_2)来研究DNA-无机杂交物。目前通过其相对高的介电常数,高直流电阻率和低于原始DNA的漏电流来研究这些系统作为生物液体的潜在栅极电介质。还设计了功能分层的装置,制造和特征,以确定介电应用中的任何增加的益处。检测DNA和DNA-CTMA的电/介电特性,具有溶胶 - 凝胶衍生的陶瓷,高k陶瓷填料和层状装置,以确定它们对能量存储和生物电化应用的重要介电参数的影响。

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