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Heterostructured CuO@ZnO@Ag biomimetic setaria as wettability-switchable difunctional SERS substrate for trace pesticide and DNA detections

delete2021-07-06
delete18
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OA
AI
C
Chuanshen Han
Y
Yisheng Wei
F
Fengcai Lei
Y
Yumeng Wang
C
Chonghui Li
S
Shuai Su
张超 cover
张超 (Chao Zhang)
Z
Zhen Li
J
Jing Yu *
DOI:10.1515/nanoph-2021-0179delete
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Abstract

Abstract

En 中文
Wettability modification is an effective way in tailoring hotspots in surface Raman scattering (SERS) nowadays. However, due to the theoretical contradiction between hydrophobic and hydrophilic strategies, opposite views are usually put forward in building SERS structures. To realize the integration of hydrophobicity and hydrophilia in the same substrate, a wettability-switchable SERS architecture composed of heterostructured CuO@ZnO@Ag biomimetic nano Setaria (NS) has been designed and prepared in this paper. Experimentally, the structure shows impressive SERS performance under both hydrophobic and hydrophilic states. The limit of detection approaches even to singlemolecule level and the lowest relative standard deviation is only ca 9.8%. Finite-different time-domain simulations and experimental analyses were systemically made to unearth the mechanism deep behind. Besides, owing to fine quantifiability, the CuO@ZnO@Ag NS shows promising potential in the detection of trace pesticide and deoxyribonucleic acid. This work provides a new idea for integrating the strategies of 'concentration' and 'decentralization', endowing SERS structurewithwider application, and is alsomeaningful for other surface sciences.
Keywords:
DNA detection
pesticide detection
surface-enhanced Raman scattering
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Nanophotonics
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Dezhou University
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Shandong Agricultural University
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shandong normal university
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