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Microfluidic synthesis of high-valence programmable atom-like nanoparticles for reliable sensing†

Authors :
Runzhi Chen
Jing Li
Houyu Wang
Xiaofeng Wu
Yao He
Huayi Shi
Fenglin Dong
Jiayi Cheng
Source :
Chemical Science
Publication Year :
2020
Publisher :
The Royal Society of Chemistry, 2020.

Abstract

Synthesis of programmable atom-like nanoparticles (PANs) with high valences and high yields remains a grand challenge. Here, a novel synthetic strategy of microfluidic galvanic displacement (μ-GD) coupled with microfluidic DNA nanoassembly is advanced for synthesis of single-stranded DNA encoder (SSE)-encoded PANs for reliable surface-enhanced Raman scattering (SERS) sensing. Notably, PANs with high valences (e.g., n-valence, n = 12) are synthesized with high yields (e.g., >80%) owing to the effective control of interfacial reactions sequentially occurring in the microfluidic system. On the basis of this, we present the first demonstration of a PAN-based automatic analytical platform, in which sensor construction, sample loading and on-line monitoring are carried out in the microfluidic system, thus guaranteeing reliable quantitative measurement. In the proof-of-concept demonstration, accurate determination of tetracycline (TET) in serum and milk samples with a high recovery close to 100% and a low relative standard deviation (RSD) less than 5.0% is achieved by using this integrated analytical platform.<br />A novel synthetic strategy is presented for microfluidic preparation of programmable atom-like nanoparticles with high valences and high yields.

Details

Language :
English
ISSN :
20416539 and 20416520
Volume :
12
Issue :
3
Database :
OpenAIRE
Journal :
Chemical Science
Accession number :
edsair.doi.dedup.....992fba8f0db8531b53b74c7d770b88af