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Bioassisted capture and release of nanoparticles on nanolithographed ZnO films

机译:在纳米光刻的ZnO薄膜上生物辅助捕获和释放纳米颗粒

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Using an artificial peptide library, we have identified a peptide that has strict selective affinity for ZnO surfaces. The binding affinity of the peptide on the ZnO surface can be controlled simply through changes in phosphate concentration at constant pH and temperature. In this study, we functionalized inorganic nanoparticles by orderly conjugating ZnO-binding peptides (ZnOBPs) on the surface of cadmium selenide (CdSe) nanoparticles and performed spontaneous and reversible nanopatterning of ZnOBP-displayed nanoparticles on lithographed ZnO films. Conjugation of ZnOBPs on CdSe nanoparticles caused spontaneous adsorption of the nanoparticles on a ZnO film, and fluorescence and cathodoluminescence images clearly showed specific adsorption of nanoparticles on the ZnO films lithographed on nano-and micrometer scales. The selectively bound nanoparticles on ZnO films were completely released by changing the phosphate concentration in solution; such release did not require heat or mechanical applications. Repeated capture and release of nanoparticles were achieved on the micrometer scale. Our results show the potential of material-binding peptides for nanopatterning and dynamic microarrays.
机译:使用人工肽库,我们确定了对ZnO表面具有严格选择性亲和力的肽。可以简单地通过在恒定pH和温度下改变磷酸盐浓度来控制肽在ZnO表面的结合亲和力。在这项研究中,我们通过有序共轭硒化镉(CdSe)纳米颗粒表面上的ZnO结合肽(ZnOBPs)来官能化无机纳米颗粒,并在光刻的ZnO薄膜上自发且可逆地对ZnOBP显示的纳米颗粒进行了纳米构图。 ZnOBP在CdSe纳米粒子上的共轭导致纳米粒子自发地吸附在ZnO膜上,荧光和阴极发光图像清楚地显示出纳米级和微米级平版印刷的ZnO膜上纳米粒子的特异性吸附。通过改变溶液中的磷酸盐浓度,可以完全释放ZnO膜上选择性结合的纳米颗粒。这种释放不需要加热或机械应用。在微米尺度上实现了纳米颗粒的重复捕获和释放。我们的结果显示了材料结合肽在纳米阵列和动态微阵列中的潜力。

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