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首页> 外文期刊>Angewandte Chemie >An Organic Semiconductor Organized into 3D DNA Arrays by 'Bottom-up' Rational Design
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An Organic Semiconductor Organized into 3D DNA Arrays by 'Bottom-up' Rational Design

机译:通过“自下而上”理性设计组织成3D DNA阵列的有机半导体

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A 3D array of organic semiconductors was assembled using a DNA scaffold. An octameric aniline molecule ("octaniline") was incorporated into a DNA building block based on a dimeric tensegrity triangle. The construct self-assembled to form a 3D crystal. Reversible redox conversion between the pernigraniline and leucoemeraldine states of the octaniline is retained in the crystal. Protonic doping gave emeraldine salt at pH 5, corresponding to the conductive form of polyaniline. Redox cycling within the crystal was visualized by color changes and Raman microscopy. The ease of conversion between the octaniline states suggests that it is a viable electronic switch within a unique 3D structure.
机译:使用DNA支架组装3D有机半导体阵列。 八氨酸苯胺分子(“octaNiline”)基于二聚体立体三角形掺入DNA构建块中。 构造自组装以形成3D晶体。 辛烷尼胺和ondaNiline的白蛋白和白细胞胺之间的可逆氧化还原转化在晶体中保留。 质子掺杂在pH5处产生祖髓盐,对应于聚苯胺的导电形式。 晶体内的氧化还原循环通过颜色变化和拉曼显微镜观察。 八氧化尼尼之间的转换易于转换表明它是一个独特的3D结构内的可行电子开关。

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