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An ammonia-based etchant for attaining copper nanoclusters with green fluorescence emission

机译:为实现铜ammonia-based腐蚀剂发光的绿色荧光发射

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摘要

Luminescent copper nanoclusters (CuNCs) constitute a very active research topic due to their unique properties and lower cost than gold and silver NCs. In this study, we report a new, facile, and rapid top-down etching method for synthesizing luminescent CuNCs, using Cu nanoparticles (CuNPs) as the precursor and ammonia (NH3) as the etchant. The etching mechanism is systematically investigated and the optical and structural properties of the obtained CuNCs are carefully studied. The NH3-triggered etching process is very fast and the newly generated CuNCs can emit strong green fluorescence with a high quantum yield. Moreover, by coupling the urease-catalyzed hydrolysis of urea with the NH3-induced etching of CuNPs, we developed a novel fluorescence turn-on assay for urea. The linear range for urea detection is from 0.25 to 5 mM, and the limit of detection is 0.01 mM. This novel sensing approach, with good sensitivity and excellent selectivity, is then successfully utilized to detect urea in human serum samples, demonstrating its great potential in clinical diagnosis. In addition, the proposed coupling method can be extended to monitor other analytes that influence the size-focusing etching process, allowing metal NCs to be used to construct diverse chemosensors and biosensors.
机译:发光的铜纳米束(CuNCs)构成由于他们独特的一个非常活跃的研究课题性能和更低的成本比金银nc。快速的自上而下的蚀刻方法合成发光CuNCs使用红、Cu (CuNPs nanoparticles)前体和氨(NH3)腐蚀剂。调查和光学和结构获得CuNCs都经过精心的属性研究。很快,新生成的CuNCs可以发出高的强绿色荧光量子产量。尿素的水解NH3-induced蚀刻CuNPs,我们开发了一种新型荧光刺激测定尿素。检测从0.25到5毫米,和的极限发现是0.01毫米。这本小说传感方法,具有良好的灵敏度和出色的选择性,然后成功地利用在人类血清样本检测尿素,展示其巨大的潜力在临床诊断。此外,提出耦合方法扩展监控其他分析物的影响size-focusing腐蚀过程,使金属nc是用于构造不同的淬灭和生物传感器。

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