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1.Z. J. Yang, Z. H. Hao, H. Q. Lin, Q. Q. Wang, Plasmonic Fano resonances in metallic nanorod complexes, Nanoscale 6, 4985-4997 (2014) (invited) 2.F. Nan, Z. Q. Cheng, Y. L. Wang, Q. Zhang, L. Zhou, Z. J. Yang, Y. T. Zhong, S. Liang, Q. H. Xiong, Q. Q. Wang, Manipulating Nonlinear Emission and Cooperative Effect of CdSe/ZnS Quantum Dots by Coupling to a Silver Nanorod Complex Cavity, Sci. Rep. 4, 4839 (2014). 3.F. Nan, S. Liang, J. H. Wang, X. L. Liu, D. J. Yang, X. F. Yu, L. Zhou, Z. H. Hao, Q. Q. Wang, Tunable Plasmon Enhancement of Gold/Semiconductor Core/Shell Hetero-Nanorods with Site-Selectively Grown Shell, Adv. Opt. Mater. 2, 679 (2014). 4.Y. L. Wang, F. Nan, X. L. Liu, L. Zhou, X. N. Peng, Z. K. Zhou, Y. Yu, Z. H.Hao, Y. Wu, W. Zhang, Q. Q. Wang, Z. Y. Zhang, Plasmon-Enhanced Light Harvesting of Chlorophylls on Near-Percolating Silver Films via One-Photon Anti-Stokes Upconversion, Sci. Rep. 3, 1861 (2013). 5.X. L. Liu, S. Liang, F. Nan,Z. J. Yang, X. F. Yu, L. Zhou, Z. H. Hao, Q. Q. Wang, Solution-dispersible Au nanocube dimers with greatly enhanced two-photon luminescence and SERS, Nanoscale 5, 5368-5374 (2013). 6.S. Liang, X. L. Liu, Y.Z. Yang, Y. L.Wang, J.H. Wang, Z. J. Yang, L. B. Wang, S. F. Jia, X .F. Yu, L .Zhou, J. B. Wang, J. Zeng, Q. Q. Wang, Z. Y. Zhang, Symmetric and Asymmetric Au-Ag CdSe Hybrid Nanorods, Nano Lett. 12, 5281-5286 (2012). 7.Z. J. Yang, Q. Q. Wang, H. Q. Lin, Cooperative effects of two optical dipole antennas coupled to plasmonic Fabry-Perot cavity, Nanoscale 4, 5308-5311 (2012). 8.Z. K. Zhou, X. N. Peng, Z. J. Yang, Z. S. Zhang, M. Li, X. R. Su, Q. Zhang, X. Shan, Q. Q. Wang, Z. Y. Zhang, Tuning Gold Nanorod-Nanoparticle Hybrids into Plasmonic Fano Resonance for Dramatically Enhanced Light Emission and Transmission. Nano Lett. 11, 49-55 (2011). 9.Q. Zhang, X. Y. Shan, F. Xiao, C. X. Wang, Q. Q. Wang, J. F. Jia, Q. K. Xue, Modulating resonance modes and Q value of a CdS nanowire cavity by single Ag nanoparticles, Nano Lett. 11, 4270-4274 (2011). 10.M. Li, X. F. Yu, S. Liang, X. N. Peng, Z. J. Yang, Y. L. Wang, Q. Q. Wang, Synthesis of Au–CdS Core–Shell Hetero-Nanorods with Efficient Exciton–Plasmon Interactions, Adv. Funct. Mater. 21, 1788-1794 (2011). 11.Y. Xiang, X. F. Yu, D. F. He, Z. Sun, Z. Cao, Q. Q. Wang. Synthesis of highly luminescent and anion-exchangeable cerium-doped layered yttrium hydroxides for sensing and photofunctional applications. Adv. Funct. Mater. 21, 4388-4396 (2011). 12. X. F. Yu, Z. B. Sun, M. Li, Y. Xiang, Q. Q. Wang, F. F. Tang, Y. L. Wu, Z. J. Cao, W. X. Li, Neurotoxin-conjugated upconversion nanoprobes for direct visualization of tumors under near-infrared irradiation. Biomater. 31, 8724-8731 (2010). 13.Z. K. Zhou, M. Li, Z. J. Yang, X. N. Peng, X. R. Su, Z. S. Zhang, J. B. Li, N. C. Kim, X. F. Yu, L. Zhou, Z. H. Hao, Q. Q. Wang, Plasmon-Mediated Radiative Energy Transfer across a Silver Nanowire Array via Resonant Transmission and Subwavelength Imaging. ACS Nano. 4, 5003-5010 (2010). 14.X. F. Yu, M. Li, M. Y. Xie, L. D. Chen, Y. Li, Q. Q. Wang,Dopant-Controlled Synthesis of Water-Soluble Hexagonal NaYF4 Nanorods with Efficient Upconversion Fluorescence for Multicolor Bioimaging. Nano Res. 3, 51-60 (2010). 15.H. M. Gong, L. Zhou, X. R. Su, S. Xiao, S. D. Liu, Q. Q. Wang, Illuminating Dark Plasmons of Silver Nanoantenna Rings to Enhance Exciton-Plasmon Interactions. Adv. Funct. Mater. 19, 298-303 (2009). 16. 王取泉,程木田,刘绍鼎,王霞,周慧君,基于半导体量子点量子计算与量子信息,中国科学技术大学出版社(2009)。 17.X. F. Yu, L. D. Chen, Y. Li, M. Li, M. Y. Xie, L. Zhou, Q. Q. Wang, Highly Efficient Fluorescence of NdF3/SiO2 Core-shell Nanocrystals and the Applications for in vivo NIR Detection. Adv. Mater. 20, 4118-4123 (2008). 18.L. D. Chen, J. Liu, X. F. Yu, M. He, X. F. Pei, Z. Y. Tang, Q. Q. Wang, D. W. Pang, Y. Li, Biocompatibility of quantum dot probes used for targeted imaging of hepatocellular carcinoma metastasis. Biomater. 29, 4170-4176 (2008). 19.H. Deng, S. Yang, S. Xiao, H. M. Gong, Q. Q. Wang, Controlled Synthesis and Upconverted Avalanche Luminescence of Cerium(III) and Neodymium(III) Orthovanadate Nanocrystals with High Uniformity of Size and Shape. J. Am. Chem. Soc. 130, 2032-2040 (2008).