2021
DOI: 10.1016/j.jallcom.2020.158120
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Photochemical synthesis of ZnO/Ag heterogeneous nanostructure on chemically patterned ferroelectric crystals for high performance SERS detection

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Cited by 21 publications
(13 citation statements)
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“…Firstly, the Al/ZnO surface provides dense lamellar porous structure with more tip areas, which generate abundant active sites for the growth of AgNPs. When appropriate amount and size of AgNPs are uniformly distributed on the tip regions of the Al/ZnO lamellar structure, 39 strong LSPR of AgNPs is generated, 40 which corresponded to electromagnetic enhancement. Secondly, the outstanding SERS response of CV on the Al/ ZnO/Ag substrate is also attributed to the strong synergistic effect among Al, ZnO, and Ag.…”
Section: Stability Uniformity and Repeatability Of The Substratementioning
confidence: 99%
“…Firstly, the Al/ZnO surface provides dense lamellar porous structure with more tip areas, which generate abundant active sites for the growth of AgNPs. When appropriate amount and size of AgNPs are uniformly distributed on the tip regions of the Al/ZnO lamellar structure, 39 strong LSPR of AgNPs is generated, 40 which corresponded to electromagnetic enhancement. Secondly, the outstanding SERS response of CV on the Al/ ZnO/Ag substrate is also attributed to the strong synergistic effect among Al, ZnO, and Ag.…”
Section: Stability Uniformity and Repeatability Of The Substratementioning
confidence: 99%
“…Much effort has been devoted to constructing metal/ semiconductor composite heterostructures to improve SERS activity. [10][11][12][13][14][15] Recently, a wide range of hybrid noble metal/ semiconductor constructions based on a variety of semiconductors, such as ZnO, 15,16 TiO 2 , 17 CuO, 10,18 and Cu 2 O, 12 were reported. In general, most of these cases expressed as suitable SERS-active substrates with the proposed mechanism can be contributed by electromagnetic mechanism (EM) and/or chemical mechanism (CM) enhancement.…”
Section: Introductionmentioning
confidence: 99%
“…Además, los enfoques top-down y bottom-up son utilizados como enfoque y estrategia de síntesis destructiva en forma descendente a partir de la fragmentación de macropartículas y constructiva en forma ascendente desde átomos o moléculas, respectivamente, para obtener diferentes sistemas de MNs metálicos y no metálicos, etc. [4][5][6][7][8][9][10][11][12][13]. Desde otra perspectiva, la formación de MNs se puede obtener de acuerdo con la naturaleza del medio que impone el método en que se someten las partículas.…”
Section: Introduccionunclassified