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A Molecular Precursor Approach to Tunable Porous Tin-Rich Indium Tin Oxide with Durable High Electrical Conductivity for Bioelectronic Devices

机译:用于生物电子设备的具有持久性高电导率的可调式富锡多孔氧化铟锡的分子前体方法

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The preparation of porous, i.e., high surface area electrodes from transparent conducting oxides, is a valuable goal in materials chemistry as such electrodes can enable further development of optoelectronic, electrocatalytic, or bioelectronic devices. In this work the first tin-rich mesoporous indium tin oxide is prepared using the molecular heterobimetallic single-source precursor, indium tin tris-tert-butoxide, together with an appropriate structure-directing template, yielding materials with high surface areas and tailorable pore size. The resulting mesoporous tin-rich ITO films show a high and durable electrical conductivity and transparency, making them interesting materials for hosting electroactive biomolecules such as proteins. In fact, its unique performance in bioelectronic applications has been demonstrated by immobilization of high amounts of cytochrome c into the mesoporous film which undergo redox proces directly with the conductive electrode material.
机译:由透明导电氧化物制备多孔即高表面积电极是材料化学中的重要目标,因为这样的电极可以使光电子,电催化或生物电子器件进一步发展。在这项工作中,使用分子异双金属单源前驱体三叔丁醇铟锡和适当的结构导向模板制备了第一个富锡的介孔铟锡氧化物,产生了具有高表面积和可定制孔径的材料。所得的中孔富含锡的ITO膜显示出高且持久的导电性和透明性,使其成为承载电活性生物分子(如蛋白质)的有趣材料。实际上,其在生物电子应用中的独特性能已通过将大量细胞色素c固定在介孔膜中来证明,该介孔膜直接与导电电极材料进行氧化还原过程。

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