2013

Biomolecular gradients via semiconductor gradients: characterization of amino acid adsorption to InxGa1-xN surfaces.

ACS applied materials & interfaces Bain LE, Jewett SA, Mukund AH, Bedair SM, Paskova TM, Ivanisevic A
阅读原文 PDF DOI PubMed

组成图示

示意图生成中

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检测原理

检测灵敏度

效应效果

传感器的构成

中文摘要

英文摘要

The band gap of indium gallium nitride can be tuned by varying the compositional ratio of indium to gallium, spanning the entire visible region and extending into the near-infrared and near-ultraviolet. This tunability allows for device optimization specific to different applications, including as a biosensor or platform for studying biological interactions. However, these rely on chemically dependent interactions between the device surface and the biostructures of interest. This study presents a material gradient of changing In:Ga composition and the subsequent evaluation of amino acid adsorption to this surface. Arginine is adsorbed to the surface in conditions both above and below the isoelectric point, providing insight to the role of electrostatic interactions in interface formation. These electrostatics are the driving force of the observed adsorption behaviors, with protonated amino acid demonstrating increased adsorption as a function of native surface oxide buildup. We thus present a gradient inorganic substrate featuring varying affinity for amino acid adhesion, which can be applied in generating gradient architectures for biosensors and studying cellular behaviors without application of specialized patterning processes.

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