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Improved performance of self-assembled graphene biosensors integrated with shrink-induced tunable morphology of silver nanoparticles

机译:改进的自组装石墨烯生物传感器的性能与银纳米粒子的收缩诱导可调谐形态相集成

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A procedure to fabricate tunable surface morphology of self-assembled graphene nanoplatelets or silver nanoparticles on a shrink polymer substrate in this paper demonstrates controllable features different from conventional graphene and silver nanoparticle composites. Subsequently, a graphene biosensor integrated with silver nanoparticles is developed using roll-to-roll fabrication process without lithography. This biosensor with a higher sensitivity and a lower detection limit indicates that this simple low-cost process has many potential applications to label-free, ultra-sensitive, and molecule-specific detections. The shrink properties of polymer composites promise potential applications to biomedical and chemical sensing.
机译:本文中在收缩的聚合物基底上制备自组装石墨烯纳米片或银纳米粒子的可调节表面形态的程序证明了与常规石墨烯和银纳米粒子复合材料不同的可控特征。随后,使用卷对卷制造工艺(无需光刻)开发了与银纳米颗粒集成在一起的石墨烯生物传感器。这种具有更高灵敏度和更低检测限的生物传感器表明,这种简单的低成本过程在无标记,超灵敏和分子特异性检测中具有许多潜在的应用。聚合物复合材料的收缩性能有望应用于生物医学和化学传感领域。

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