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Fluorescence tuning behavior of carbon quantum dots with gold nanoparticles via novel intercalation effect of aldicarb

机译:碳量子点通过新型嵌入作用碳纳米粒子碳量子点的荧光调整行为

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摘要

A simple, sensitive and rapid fluorometric system has been developed for the detection of aldicarb (ALD) based on inner filter effect (IFE) of gold nanoparticles (AuNPs) on fluorescence (FL) intensity of carbon quantum dots (CQDs). Addition of CQDs into AuNPs, gets them aggregated due to electrostatic interaction resulting in quenching the FL intensity of CQDs. With addition of ALD into AuNPs, an intercalated layer was formed between them through Au-N and Au-S bond which reduced IFE of AuNPs. Hence, CQDs FL intensity recovered along with ALD concentration varying between 3.8 and 76 mu g L-1 with lower detection limit of 3.02 mu g L-1. The spiked real samples study in fruits, vegetables and soft drinks revealed that this sensing platform was repeatable and effective for real samples. The validation of proposed method indicates that the ALD sensor is promising and adaptable for everyday on spot environment and food safety monitoring.
机译:已经开发了一种简单,敏感和快速的荧光系统,用于基于金纳米颗粒(AUNP)的内滤波效果(IFE)对碳量子点(CQDS)的荧光(FL)强度的内部过滤器效果(IFE)进行检测。将CQDS添加到AUNPS中,由于静电相互作用导致它们聚集,导致淬火CQD的流强度。随着ALD加入AUNP,通过AU-N和AU-S键在它们之间形成插层,该层粘合剂缩小AUNP的IFE。因此,CQDS FL强度随着3.8至76μgL-1之间的ALD浓度而回收,具有较低的检测限为3.02μmg -1。尖刺的真正样本在水果中研究,蔬菜和软饮料揭示了这种传感平台是可重复的,对真实样品有效。所提出的方法的验证表明,ALD传感器对每天对现场环境和食品安全监测充满希望和适应性。

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