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A universal growth strategy for DNA-programmed quantum dots on graphene oxide surfaces

机译:石墨烯氧化物表面上DNA编程量子点的普遍生长策略

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摘要

The emerging materials of semiconductor quantum dots/graphene oxide (QDs/GO) hybrid composites have recently attracted intensive attention in materials science and technology due to their potential applications in electronic and photonic devices. Here, a simple and universal strategy to produce DNA-programmed semiconductor quantum dots/graphene oxide (QDs/GO) hybrid composites with controllable sizes, shapes, compositions, and surface properties is reported. This proof-of-concept work successfully demonstrates the use of sulfhydryl modified single-stranded DNA (S-ssDNA) as a 'universal glue' which can adsorb onto GO easily and provide the growth sites to synthesize CdS QDs, CdSe QDs, CdTe QDs and CdTeSe QDs with distinctive sizes, shapes and properties. Also, adapting this method, other graphene oxide-based hybrid materials which are easily synthesized in aqueous solution, including oxides, core-shell structure QDs and metal nanocrystals, would be possible. This method provided a universal strategy for the synthesis and functional realization of graphene -based nanomaterials.
机译:由于它们在电子和光子器件中的潜在应用,半导体量子点/石墨烯/石墨烯(QDS / GO)混合复合材料的新出现材料最近引起了材料科学和技术的强烈关注。这里,报道了一种简单且通用的策略,以产生具有可控尺寸,形状,组合物和表面性质的DNA编程的半导体量子点/石墨烯(QDS / GO)杂化复合材料。该概念证据成功地证明了使用巯基改性的单链DNA(S-SSDNA)作为'Universal Glue',其可以容易地吸附到Go ov并提供合成Cds QD,Cdse QDS,CdTe QD的生长位点和CDTESE QD具有独特的尺寸,形状和属性。另外,适应该方法,可以在水溶液中容易地合成的其他基于石墨烯的杂交材料,包括氧化物,核 - 壳结构QD和金属纳米晶体。该方法提供了基于石墨烯的合成和功能实现的通用策略。

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