中国激光, 2015, 42 (9): 0914002, 网络出版: 2015-09-06  

基于石墨烯带阵列的分子振动谱传感模型与仿真

Sensor Model and Simulation of Molecular Vibration Spectroscopy Based on Graphene Nanoribbon Arrays
作者单位
1 云南大学无线创新实验室, 云南 昆明 650091
2 北京理工大学信息与电子学院, 北京 100081
3 云南省高校谱传感与边疆无线电安全重点实验室, 云南 昆明 650091
引用该论文

邓伟, 杨晶晶, 闫肃, 杨剑锋, 黄铭. 基于石墨烯带阵列的分子振动谱传感模型与仿真[J]. 中国激光, 2015, 42(9): 0914002.

Deng Wei, Yang Jingjing, Yan Su, Yang Jianfeng, Huang Ming. Sensor Model and Simulation of Molecular Vibration Spectroscopy Based on Graphene Nanoribbon Arrays[J]. Chinese Journal of Lasers, 2015, 42(9): 0914002.

参考文献

[1] F Schedin, A K Geim, S V Morozov, et al.. Detection of individual gas molecules adsorbed on graphene[J]. Nature Materials, 2007, 6(9): 652-655.

[2] A K Geim, K S Novoselov. The rise of graphene[J]. Nature Materials, 2007, 6(3): 183-191.

[3] A H Castro Neto, F Guinea, N M R Peres, et al.. The electronic properties of graphene[J]. Reviews of Modern Physics, 2009, 81(1): 109-162.

[4] B Vasic′ , G Isic′ , R Gajic′ . Localized surface plasmon resonances in graphene ribbon arrays for sensing of dielectric environment at infrared frequencies[J]. Journal of Applied Physics, 2013, 113(1): 013110.

[5] R Verma, B D Gupta, R Jha. Sensitivity enhancement of a surface plasmon resonance based biomolecules sensor using graphene and silicon layers[J]. Sensors and Actuators B, 2011, 160(1): 623-631.

[6] J Wu, C H Zhou, J J Yu, et al.. Design of infrared surface plasmon resonance sensors based on graphene ribbon arrays[J]. Optics & Laser Technology, 2014, 59: 99-103.

[7] P K Maharana, R Jha, P Padhy. On the electric field enhancement and performance of SPR gas sensor based on graphene for visible and near infrared[J]. Sensors and Actuators B, 2015, 207: 117-122.

[8] F Bonaccorso, L Colombo, G H Yu, et al.. Graphene, related two- dimensional crystals, and hybrid systems for energy conversion and storage[J]. Science, 2015, 347(6217): 1246501.

[9] H S Chu, C H Gan. Active plasmonic switching at mid- infrared wavelengths with graphene ribbon arrays[J]. Applied Physics Letters, 2013, 102(23): 231107.

[10] S Thongrattanasiri, F H L Koppens, J G D Abajo. Complete optical absorption in periodically patterned graphene[J]. Physical Review Letters, 2012, 108(4): 047401.

[11] R Alaee, M Farhat, C Rockstuhl, et al.. A perfect absorber made of a graphene micro-ribbon metamaterial[J]. Optics Express, 2012, 20(27): 28017-28024.

[12] F Xia, T Mueller, Y M Lin, et al.. Ultrafast graphene photodetector[J]. Nature Nanotechnology, 2009, 4(12): 839-843.

[13] J Christensen, A Manjavacas, S Thongrattanasiri, et al.. Graphene plasmon waveguiding and hybridization in individual and paired nanoribbons[J]. ACS Nano, 2012, 6(1): 431-440.

[14] K S Novoselov. Nobel lecture: Graphene: Materials in the flatland[J]. Reviews of Modern Physics, 2011, 83(3): 837-849.

[15] Y Francescato, V Giannini, J J Yang, et al.. Graphene sandwiches as a platform for broadband molecular spectroscopy[J]. ACS Photonics, 2014, 1(5): 437-443.

[16] H J Li, L L Wang, Z R Huang, et al.. Mid- infrared, plasmonic switches and directional couplers induced by graphene sheets coupling system[J]. Europhysics Letters, 2013, 104(3): 37001.

[17] W Gao, J Shu, C Qiu, et al.. Excitation of plasmonic waves in graphene by guided-mode resonances[J]. ACS Nano, 2012, 6(9): 7806-7813.

[18] L A Falkovsky, S S Pershoguba. Optical far- infrared properties of a graphene monolayer and multilayer[J]. Physical Review B, 2007, 76(15): 153410.

[19] K S Novoselov, A K Geim, S V Morozov, et al.. Two-dimensional gas of massless Dirac fermions in graphene[J]. Nature, 2005, 438(7065): 197-200.

[20] G W Hanson. Dyadic Green′s functions and guided surfacewaves for a surface conductivity model of graphene[J]. Journal of Applied Physics, 2008, 103(6): 064302.

[21] 邓芹英, 刘岚, 邓慧敏. 波谱分析教程[M]. 北京: 科学出版社, 2007: 54-57.

    Deng Qinying, Liu Lan, Deng Huimin. Spectrum Analysis Tutorial[M]. Beijing: Science Press, 2007: 54-57.

邓伟, 杨晶晶, 闫肃, 杨剑锋, 黄铭. 基于石墨烯带阵列的分子振动谱传感模型与仿真[J]. 中国激光, 2015, 42(9): 0914002. Deng Wei, Yang Jingjing, Yan Su, Yang Jianfeng, Huang Ming. Sensor Model and Simulation of Molecular Vibration Spectroscopy Based on Graphene Nanoribbon Arrays[J]. Chinese Journal of Lasers, 2015, 42(9): 0914002.

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