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Electron transition manipulation under graphene-mediated plasmonic engineering nanostructure
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作者 huaizhou jin jing-Yu Wang +6 位作者 Xia-Guang Zhang Weiyi Lin Weiwei Cai Yue-Jiao Zhang Zhi-Lin Yang Fan-Li Zhang Jian-Feng Li 《Nano Research》 SCIE EI CSCD 2023年第4期5376-5382,共7页
Monolayer graphene has attracted enormous attention owing to its unique electronic and optical properties.However,achieving an effective approach without applying electrical bias for manipulating the charge transfer b... Monolayer graphene has attracted enormous attention owing to its unique electronic and optical properties.However,achieving an effective approach without applying electrical bias for manipulating the charge transfer based on graphene is elusive to date.Herein,we realized the manipulation of excitons’transition from emitter to the graphene surface with plasmonic engineering nanostructures and firstly obtained large enhancements for photon emission on the graphene surface.The localized plasmons generated from the plasmonic nanostructures of shell-isolated nanoparticle coupling to ultra-flat Au substrate would dictate a consistent junction geometry while enhancing the optical field and dominating the electron transition pathways,which may cause obvious perturbations for molecular radiation behaviors.Additionally,the three-dimensional finite-difference time-domain and time-dependent density functional theory were also carried out to simulate the distributions of electromagnetic field and energy levels of hybrid nanostructure respectively and the results agreed well with the experimental data.Therefore,this work paves a novel approach for tunning graphene charge/energy transfer processes,which may hold great potential for applications in photonic devices based on graphene. 展开更多
关键词 plasmonic nanocavity shell-core isolated nanoparticles electron transition monolayer graphene fluorescence quenching
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Manipulating the light-matter interactions in plasmonic nanocavities at 1 nm spatial resolution 被引量:1
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作者 BAO-YING WEN jinG-YU WANG +10 位作者 TAI-LONG SHEN ZHEN-WEI ZHU PENG-CHENG GUAN JIA-SHENG LIN WEI PENG WEI-WEI CAI huaizhou jin QING-CHI XU ZHI-LIN YANG ZHONG-QUN TIAN JIAN-FENG LI 《Light(Science & Applications)》 SCIE EI CAS CSCD 2022年第9期2107-2114,共8页
The light-matter interaction between plasmonic nanocavity and exciton at the sub-diffraction limit is a central research field in nanophotonics.Here,we demonstrated the vertical distribution of the light-matter intera... The light-matter interaction between plasmonic nanocavity and exciton at the sub-diffraction limit is a central research field in nanophotonics.Here,we demonstrated the vertical distribution of the light-matter interactions at~1 nm spatial resolution by coupling A excitons of MoS2 and gap-mode plasmonic nanocavities.Moreover,we observed the significant photoluminescence(PL)enhancement factor reaching up to 2800 times,which is attributed to the Purcell effect and large local density of states in gap-mode plasmonic nanocavities.Meanwhile,the theoretical calculations are well reproduced and support the experimental results. 展开更多
关键词 RESOLUTION LIGHT PLASMON
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