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Biological control of nanoparticle nucleation, shape and crystal phase

机译:纳米颗粒成核,形状和晶相的生物控制

摘要

The present invention includes compositions and methods for selective binding of amino acid oligomers to semiconductor and elemental carbon-containing materials. One form of the present invention is a method for controlling the particle size of the semiconductor or elemental carbon-containing material by interacting an amino acid oligomer that specifically binds the material with solutions that can result in the formation of the material. The same method can be used to control the aspect ratio of the nanocrystal particles of the semiconductor material. Another form of the present invention is a method to create nanowires from the semiconductor or elemental carbon-containing material. Yet another form of the present invention is a biologic scaffold comprising a substrate capable of binding one or more biologic materials, one or more biologic materials attached to the substrate, and one or more elemental carbon-containing molecules attached to one or more biologic materials.
机译:本发明包括用于使氨基酸低聚物与半导体和元素含碳材料选择性结合的组合物和方法。本发明的一种形式是通过使氨基酸特异地结合材料的溶液与可导致材料形成的溶液相互作用而控制半导体或含碳元素的材料的粒径的方法。可以使用相同的方法来控制半导体材料的纳米晶体颗粒的纵横比。本发明的另一形式是一种由半导体或含碳元素的材料制造纳米线的方法。本发明的另一种形式是生物支架,其包括能够结合一种或多种生物材料的基质,附着于该基质的一种或多种生物材料以及附着于一种或多种生物材料的一种或多种含碳元素。

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