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Strong catalysis of silver-doped carbon nitride nanoparticles and their application to aptamer SERS and RRS coupled dual-mode detection of ultra-trace K+

机译:掺杂银掺杂氮化物纳米粒子的强催化及其在适体SERS和RRS耦合的超痕量K +的双模检测

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摘要

A novel nanocatalyst of silver-doped carbon nitride quantum dots (AgCNs) was prepared by a microwave procedure, and characterized by electron microscopy, infrared (IR) spectroscopy, surface-enhanced Raman scattering (SERS), resonance Rayleigh scattering (RRS), fluorescence and absorption techniques. Using the slope procedure to evaluate the nanocatalysis, it was found that AgCNs strongly catalyzed the reduction of HAuCl(4)with glucose (GL) to generate gold nanoparticles (AuNPs). The produced AuNPs had strong SERS activity and RRS effect. With a Victoria blue B (VBB) molecular probe, the SERS intensity at 1616 cm(-1)increased linearly with the concentration of AgCN nanocatalyst. Similar to the SERS, the RRS intensity at 370 nm also increased linearly. Aptamer (Apt) could inhibit the AgCN catalytic activity. K(+)combined with Apt to form stable G-quadruplexes and release AgCNs that enhanced the SERS and RRS signals by resuming the catalytic pathway. Coupling the two scattering techniques of inelastic scattering SERS and elastic scattering RRS, we developed a dual-mode scattering method for label-free Apt detection of 5-150 nmol L(-1)K(+)with a detection limit of 0.92 nmol L-1. Furthermore, we successfully applied a coupled two mode scattering analysis and improved the SERS precision, and proposed a reasonable AgCN catalytic mechanism.
机译:通过微波方法制备银掺杂银氮化物量子点(AGCNS)的新型纳米催化剂,并通过电子显微镜,红外线(IR)光谱,表面增强拉曼散射(SERS),共振瑞利散射(RRS),荧光吸收技巧。使用斜坡程序评价纳米催化分析,发现AGCNS强烈催化了HauCl(4)的葡萄糖(G1)的减少以产生金纳米颗粒(AUNP)。所产生的AUNPS具有强大的SERS活动和RRS效果。利用维多利亚蓝B(VBB)分子探针,1616厘米(-1)的SERS强度随着AGCN纳米催化剂的浓度线性增加。与SERS类似,370nm的RRS强度也线性增加。适体(APT)可以抑制AGCN催化活性。 K(+)与APT组合形成稳定的G-四翻转和释放AGCN,通过恢复催化途径来增强SERS和RRS信号。耦合非弹性散射SERS和弹性散射RRS的两种散射技术,我们开发了一种无标记APT检测5-150 Nmol L(-1)K(+)的双模散射方法,检测限为0.92 nmol L. -1。此外,我们成功地应用了耦合的两种模式散射分析并改善了SERS精度,并提出了合理的AGCN催化机制。

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