化学
电化学发光
纳米颗粒
调制(音乐)
纳米技术
人类免疫缺陷病毒(HIV)
DNA
检出限
色谱法
生物化学
病毒学
哲学
材料科学
生物
美学
作者
Jiaxin Duan,Weiwei Cao,Xin Zhu,Qian Li,Ruo Yuan,Haijun Wang
标识
DOI:10.1021/acs.analchem.4c01106
摘要
Here, ultrasmall SiO 2 nanoparticles (u-SiO 2 NPs, <5 nm) with obvious electrochemiluminescence (ECL) phenomenon, which was absent for conventional silica nanoparticles (c-SiO 2 NPs), were reported. In a finite ultrasmall volume, the u-SiO 2 NPs exhibited increasing ground state energy and higher optical absorption strength due to the electron–hole confinement model and favored catalyzing the reaction through the rapid diffusion of bulk charge, resulting in apparent ECL emission. Then, Zn 2+ -induced u-SiO 2 nanoaggregates (Zn/u-SiO 2 –Ov nAGG) were synthesized and exhibited improved ECL performance via multipath surface state adjustment of u-SiO 2 from several aspects, including aggregation-induced ECL, the generation of oxygen vacancy (Ov), and more positive surface charge. In addition, an ECL biosensor was constructed for ultrasensitive human immunodeficiency virus-related deoxyribonucleic acid detection from 100 aM to 1 nM with a low limit of 50.48 aM, combining the ECL luminescence of Zn/u-SiO 2 –Ov nAGG with three-dimensional DNA nanomachine-mediated multioutput amplification for enhanced accuracy and sensitivity compared to the single-output method. Therefore, exploring the ECL of ultrasmall nanoparticles via the adjustment of size and surface state provided a valuable indication to a wider investigation and application of novel ECL materials for clinical diagnostic.
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