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Matryoshka-caged gold nanorods: Synthesis, plasmonic properties, and catalytic activity 被引量:4
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作者 Wei Xiong Debabrata Sikdar +4 位作者 Lim Wei Yap Pengzhen Guo Malin Premaratne Xinyong Li Wenlong Cheng 《Nano Research》 SCIE EI CAS CSCD 2016年第2期415-423,共9页
将 Matryoshka 关入笼中的金 nanorods (mCGNRs ) 被在一个调停种子的银涂层方法和流电的代替反应(GRR ) 之间轮流出现成功地综合。当 mCGNRs 的 matryoshka 层的数字增加了,拓宽并且是转移红的电浆子回声山峰,和向 4-nitrophenol (4-... 将 Matryoshka 关入笼中的金 nanorods (mCGNRs ) 被在一个调停种子的银涂层方法和流电的代替反应(GRR ) 之间轮流出现成功地综合。当 mCGNRs 的 matryoshka 层的数字增加了,拓宽并且是转移红的电浆子回声山峰,和向 4-nitrophenol (4-NTP ) 的减小的催化活动增加了。当有 6 层的 mCGNRs 在 4-nitrophenol 的减小被用作 nanocatalysts 时,反应率系数分别地比 gold-nanorod- 和 4-nitrophenol 的 caged-gold-nanorod-catalyzed 减小的高是 5.2-times 和 3.7-times。另外,光的 surface-plasmon-resonance-based 吸收提高了 mCGNRs 的催化表演。与聚氨酯泡沫的支持, mCGNRs 在这研究综合了能作为 recyclable 被使用为 4-nitrophenol 的减小的异构的催化剂。 展开更多
关键词 催化活性 纳米棒 合成 光学性质 表面等离子体共振 对硝基苯酚 还原催化剂
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Self-Assembled Plasmonic Pyramids from Anisotropic Nanoparticles for High-Efficient SERS
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作者 Wenjuan Yang Kae Jye Si +4 位作者 Pengzhen Guo Dashen Dong Debabrata Sikdar Malin Premaratne Wenlong Cheng 《Journal of Analysis and Testing》 EI 2017年第4期335-343,共9页
Surface-enhanced Raman scattering(SERS)substrates play important roles for the enhancement of inelastic scattering signals.Traditional substrates such as roughened electrodes and colloidal aggregates suffer from well-... Surface-enhanced Raman scattering(SERS)substrates play important roles for the enhancement of inelastic scattering signals.Traditional substrates such as roughened electrodes and colloidal aggregates suffer from well-known signal reproducibility issues,whereas for current dominant two-dimensional planar systems,the hot spot distributions are limited by the zero-,one-or two-dimensional plane.The introduction of a three-dimensional(3D)system such as a pyramid geometry breaks the limitation of a single Cartesian SERS-active area and extends it into the z-direction,with the tip potentially offering additional benefits of strong field enhancement and high sensitivity.However,current 3D pyramidal designs are restricted to film deposition on prepared pyramid templates or self-assembly in pyramidal molds with spherical building blocks,hence limiting their SERS effectiveness.Here,we report on the fabrication of a new class of low cost and well-defined plasmonic nanoparticle pyramid arrays from different anisotropic shaped nanoparticles using combined top-down lithography and bottom-up self-assembly approach.These pyramids exhibit novel optical scattering properties that can be exploited for the design of reproducible and sensitive SERS substrate.The SERS intensity was found to decrease drastically in accordance with a power law function as the focal planes move from the apex of the pyramid structure towards the base.In comparison to sphere-based building blocks,pyramids assembled from anisotropic rhombic dodecahedral gold nanocrystals with numerous sharp tips exhibited the strongest SERS performance.Graphical Abstract Macroscale pyramidal array films with plasmonic tunability as a new class of SERS substrate for sensitive detection of chemicals. 展开更多
关键词 SELF-ASSEMBLY PYRAMID PLASMONICS Shape anisotropy Surface-enhanced Raman scattering
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