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首页> 外文期刊>Nanoscale >Facet-energy inspired metal oxide extended hexapods decorated with graphene quantum dots: sensitive detection of bisphenol A in live cells
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Facet-energy inspired metal oxide extended hexapods decorated with graphene quantum dots: sensitive detection of bisphenol A in live cells

机译:Facet-energy启发金属氧化物扩展昆虫装饰着石墨烯量子点:敏感的检测活细胞中双酚A

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The development of crystal-facet metal oxide heterostructures has been of great interest owing to their rational design and multifunctional properties at the nanoscale level. Herein, we report a facile solution-based method for the synthesis of single-crystal Cu2O nanostructures (i.e.Cu2O-CuO) as a core. Graphene quantum dots (GQDs) with varying concentrations are fabricated on the surface of Cu2O extended hexapods (EHPs) in ethanol solution at room temperatureviaself-assembly, where copper acts as a sacrificial model and a stabilizer as well. The Cu2O crystals displayed a good sensing activity toward BPA oxidation owing to their high energy facets, dangling bonds and great proportion of surface copper atoms. Structural, morphological, chemical and vibrational investigations were performed in detail, presenting high crystallinity of hybrid nanocomposites and Cu2O-CuO heterojunction positions along with the growth of GQDs on the core of Cu2O-CuO crystals. The electrochemical sensing performance of the as-fabricated Cu2O-CuO@GQD EHPs was monitored for the determination of bisphenol A (BPA) as an early diagnostic marker and environmental contaminant. The synergistic effects of the boosted surface area, exposed Cu {111} crystallographic planes and mixed copper valences enhance redox reaction kinetics by increasing the electron shuttling rate at the electrode-analyte junction. Benefitting from the improved electrocatalytic activity for BPA oxidation, the electrochemical sensor displayed the lowest limit of detection (<= 1 nM), good chemical stability, a broad linear range (2 nM-11 mM), and high sensitivity (636 mu A mM(-1)cm(-2)). The Cu2O-CuO@GQD EHP-based sensing platform was used for BPA detection in water and human serum samples. We have also constructed a pioneering electrochemical sensing platform for BPA detection in live cells, which might be used as a marker for early disease diagnosis.
机译:crystal-facet金属氧化物的发展由于异质结构的极大兴趣他们的理性设计和多功能在纳米级别属性。报告简单为基础的解决方案方法合成单晶Cu2O纳米结构(i.e.Cu2O-CuO)作为核心。(GQDs)不同浓度是捏造的表面Cu2O扩展昆虫(EHPs)在乙醇溶液的房间temperatureviaself-assembly,铜作为牺牲模型和稳定剂。Cu2O晶体呈现出良好的传感的活动对双酚a氧化由于其高的能量方面,晃来晃去的债券和大的比例表面铜原子。化学和振动调查中执行的细节,呈现高杂化纳米复合材料的结晶度和随着Cu2O-CuO异质结位置增长的GQDs Cu2O-CuO晶体的核心。的电化学传感性能纯属捏造Cu2O-CuO@GQD EHPs监测双酚A (BPA)的决心早期诊断标记和环境污染物。增加了表面积,暴露立方{111}晶体的飞机和混合铜价提高氧化还原反应动力学通过增加电子穿梭在electrode-analyte率结。BPA氧化electrocatalytic活动,电化学传感器显示的最低限制检测(< = 1海里),化学稳定性好,一个广泛的线性范围(2 nM-11毫米),和高灵敏度(636亩一毫米(1)厘米(2))。Cu2O-CuO@GQD EHP-based传感平台使用对双酚a在水和人类血清检测样本。电化学传感BPA的平台检测活细胞,这可能被用作标记为疾病的早期诊断。

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