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学术论文

已在国内外权威刊物上发表学术论文100余篇,其中80余篇被SCI、EI检索。申请中国发明专利20余项,已授权国家发明专利15项,美国发明专利1项,软件著作权1项。

 

代表性论著:

 

[1]   Long Li, Yongjiu Li, Zhao Wu, Feifei Huo, Yongliang Zhang, Chunsheng Zhao, "Novel polarization-reconfigurable converter based on multilayer frequency-selective surfaces," Proceedings of the IEEE, vol. 103, no. 7, pp. 1057-1070, July 2015. (中科院 1区,IF: 9.107)

[2]  Long Li, H. Liu, H. Zhang, W. Xue, "Effieiency wireless power transfer system integrating with metasurface for biological applications," IEEE Transactions on Industrial Electronics, vol. 65, no. 4, pp.3230-3239, 2018. (中科院1区,IF: 7.050)

[3]  S. Yu, H. Liu, and Long Li, "Design of near-field focused metasurface for high efficient wireless power transfer with multi-focus characteristics," IEEE Transactions on Industrial Electronics, vol. 65, 2018. (中科院1区, IF:7.050)

[4]  Long Li, R. Xi, H. Liu, and Z. Lv, "Broadband polarization-independent and low-profiles optically transparent metamateial absorber," Applied Physics Express, 11, 052001, 2018. (中科院2区)

[5]  S. Yu, L. Li, and N. Kou, "Generation, receiption and separation of mixed-state orbital angular momentum vortex beams using metasurfaces," Optical Materials Express, vol. 7, no. 9, pp.3312-3321, 2017. (中科院2区)

[6]  X. Zhang, H. Liu, and L. Li, "Tri-band miniaturized wide-angle and polarization-insensitive metasurface for ambient energy harvesting," Applied physics Letters, 111. 071902, 2017. (中科院2区)

[7]  Na Kou, Shixing Yu, and Long Li, “Generation of high-order Bessel vortex beam carrying orbital angular momentum using multilayer amplitude-phase-modulated surfaces in radiofrequency domain”, Applied Physics Express, 10, 016701, 2017. (中科院2区)

[8]  Shixing Yu, Long Li, Guangming Shi, Cheng Zhu, and Yan Shi, " Design, Fabrication and Measurement of Reflective Metasurface for Orbital Angular Momentum Vortex Wave in Radio Frequency Domain," Applied Physics Letters, 108, 121903, 2016. (中科院2区)

[9]  Shixing Yu, Long Li, Guangming Shi, Cheng Zhu, and Yan Shi, "Generating multiple orbital angular momentum vortex beams using a metasurface in radio frequency domain," Applied Physics Letters, 108, 241901, 2016. (中科院2区)

[10]  Shixing Yu, Long Li, Guangming Shi, “Dual-polarization and dual-mode orbital angular momentum radio vortex beam generated by using reflective metasurface,” Applied Physics Express, 9, 082202, 2016.(中科院2区)

[11]   Ke Li, Long Li, Yuan-Ming Cai, Cheng Zhu, and Chang-Hong Liang, "A Novel Design of Low-Profile Dual-Band Circularly Polarized Antenna With Meta-Surface," IEEE Antennas Wireless Propagation Letters, vol. 14, pp. 1650-1653, 2015.

[12]  Zhao Wu, Long Li, Yongjiu Li, and Xi Chen, "Metasurface Superstrate Antenna with Wideband Circular Polarization for Satellite Communication Application", IEEE Antennas Wireless Propagation Letters, vol. 15, pp. 374-377, 2016.

[13]  Yongjiu Li, Long Li, Yongliang Zhang, and Chunsheng Zhao, "Design and synthesis of multilayer frequency selective surface based on antenna-filter-antenna using Minkowski fractal structures," IEEE Trans. Antennas Propagation, vol. 63, no. 1, pp. 133-141, Jan. 2015. (中科院2区)

[14]  Yan Shi, Ke Li, Jing Wang, Long Li, and Chang-Hong Liang, "An Etched Planar Metasurface Half Maxwell Fish-Eye Lens Antenna," IEEE Trans. Antennas Propagation, vol. 63, no. 8, pp. 3742-3747, Aug. 2015.(中科院2区)

[15] Guihong Li, Huiqing Zhai, Long Li, Changhong Liang, Rongdao Yu, and Sheng Liu, "AMC-loaded wideband base station antenna for indoor access point in MIMO system," IEEE Trans. Antennas Propagation, vol. 63, no. 2, pp. 525-532, Feb. 2015. (中科院2区)

[16]     Long Li, Zhao Wu, Ke Li, et al., "Frequency-reconfigurable quasi-Sierpinski antenna integrating with dual-band high-impedance surface", IEEE Trans. Antennas Propagation, vol. 62, no. 9, pp. 4459-4467, 2014.(中科院2区)

[17]     Y. J. Li and L. Li, "Broadband microstrip beam deflector based on dual-resonance conformal loops array," IEEE Trans. Antennas Propagation, vol. 62, no. 6, pp. 3028-3034, 2014. (中科院2区)

[18]    F. F. Huo, L. Li, T. Li, Y. M. Zhang, and C. H. Liang, "External invisibility cloak for multiobjects with arbitrary geometries," IEEE Antennas Wireless Propagation Letters, vol. 13, pp. 273-276, 2014.

[19]  Fei-Fei Huo, Long Li, Yong-Jiu Li, "Multifunctional electromagnetic concentrator based on complementary media and realized with multilayer metamaterials," IEEE Antennas Wireless Propagation Letters, vol. 13, pp. 1804-1807, 2014.

[20]  Li Long, Fan Yingchun, Shixing Yu, Cheng Zhu, Changhong Liang, “Design,   Fabrication and Measurement of Highly Sub-wavelength Double Negative Metamaterials at HF Frequencies,” Journal of Applied Physics, 113,271372, 2013.

[21]  Li Long, Huo Feifei, Y. M. Zhang, Y. Chen, and C. H. Liang, “Design of invisibility anti-cloak for two-dimensional arbitrary geometries,” Optic Express, vol. 21, no. 8, pp. 9422–9427, 2013. (中科院2区)

[22]   Li Long, Jia Zeng, F. F. Huo, and W. Q. Han, "A novel compact multiband antenna employing dual-band CRLH-TL for smart mobile phone application, " IEEE Antennas Wireless Propagation Letters, vol.12, pp.1688-1691, 2013.

[23]  Li Long, Huo Feifei, Z. Jia, and W. Q. Han, "Dual zeroth-order resonance antennas with low mutual coupling for MIMO communications," IEEE Antennas Wireless Propagation Letters, vol. 12, pp. 1692-1695, 2013.

[24]  Xi Chen, Long Li, Chang Hong Liang, Zi Jian Su, and Cheng Zhu, “Dual-band high impedance surface with mushroom-type cells loaded by symmetric meandered slots,” IEEE Trans. Antennas Propagation, vol. 60, no. 10, pp. 4677-4687, Oct. 2012. (中科院2区)

[25]  Li Long, Yang Yang, Liang Chang-Hong, “A wide-angle polarization-insensitive ultra-thin metamaterial absorber with three resonant modes,” Journal of Applied Physics, 110, 063702, Sept. 2011.

[26]  Li Long, Chen Qiang, Kunio Sawaya, et. al., “Frequency selective reflectarray using crossed-dipole elements with square loops for wireless communication applications,” IEEE Trans. Antennas Propagat., vol. 59, no. 1, pp. 89-99, Jan. 2011. (中科院2区)

[27]  Li Long, Liang Changhong, Kunio Sawaya, et. al., “Surface-wave suppression band gap and plane-wave reflection phase band of mushroomlike photonic band gap structures,Journal of Applied Physics, 103, 023513, Jan. 2008.

[28]  Li Long, Wang Hao Gang, and Chan Chi-Hou, “An improved multilevel Green’s function interpolation method with adaptive phase compensation”, IEEE Trans. Antennas Propagat., vol. 56, no. 5, pp. 1381-1393, May 2008. (中科院2区)

[29] Li Long, Liang Changhong, et. al., “Locally resonant cavity cell model of electromagnetic bandgap structures”, IEEE Trans. Antennas Propagat., vol. 54, no. 1, pp. 90-100, Jan. 2006. (中科院2区)

[30]  Li Long and Liang Changhong, “Generalized system function analysis of exterior and interior resonances of antenna and scattering problems,” IEEE Trans. Antennas Propagat., vol. 52, no. 8, pp. 2064-2072, Aug. 2004. (中科院2区)

[31]  Li Long, Chen Qiang, and Kunio Sawaya, “Ultrawideband suppression of ground bounce noise in multilayer PCB using locally embedded planar electromagnetic bandgap,” IEEE Antennas and Wireless Propagation Letters, vol. 8, pp. 740-743, 2009.

[32]  Li Long, Chen Qiang, Kunio Sawaya, et. al., “Novel broadband planar reflectarray with parasitic dipoles for wireless communication applications,” IEEE Antennas and Wireless Propagation Letters, vol.8, pp.881- 885, 2009.

[33] Li Long, Liang Changhong, et. al., “Analysis and design of waveguide slot Antenna array integrated with electromagnetic band-gap structures,” IEEE Antennas and Wireless Propagation Letters, vol. 5, pp. 111-115, 2006.

[34]  Li Long, Liang Changhong, and Chan Chi-Hou, “Waveguide end-slot phased array antenna integrated with electromagnetic bandgap structure,” Journal of Electromagnetic Waves and Applications, vol. 21, no. 2, pp. 161-174, 2007.

[35]  Li Long, Chen Qiang, Yuan Qiaowei, Kunio Sawaya, et. al, “Microstrip reflectarray using crossed-dipole with frequency selective surface of loops,” International Symposium on Antennas and Propagation (ISAP2008), Oct. 27-30, Taibei, Taiwan, 2008. (Best Paper Award)

[36]  Xi Chen, Long Li, Chang-Hong Liang, Zi Jian Su, “Locally resonant cavity cell model for meandering slotted electromagnetic band gap structure,” IEEE Antennas and Wireless Propagation Letters, vol. 9, pp.3-7, 2010.

[37]  Yan He, Long Li, Huiqing Zhai, Xiaojie Dang, Chang-Hong Liang, and Qing Huo Liu, “Sierpinski space-filling curves and their application in high-speed circuits for ultrawideband SSN suppression”, IEEE Antennas and Wireless Propagation Letters, vol. 9, pp. 568-571, 2010.

[38]  Qiaowei Yuan, Qiang Chen, Long Li, Kunio Sawaya, “Numerical analysis on transmission efficiency of evanescent resonant coupling wireless power transfer system”, IEEE Trans. Antennas and Propagation, vol. 58, no. 5, pp. 1751-1758, May 2010. (中科院2区)

[39] Cheng Zhu, Jingjing Ma, Long Li, Changhong Liang, “Multiresonant metamaterial based on asymmetric triangular electromagnetic resonators”, IEEE Antennas and Wireless Propagation Letters, vol. 9, pp. 99-102, 2010.

[40]  Yan He, Long Li, Chang-Hong Liang, Qing Huo Liu, and Hai-Bing Wen, “Leafy EBG structures for ultra-wideband SSN suppression in power/ground plane pairs”, Electronics Letters, vol. 46, no.11, pp.768-769, 2010.

[41]  Yan Shi, Long Li, and Changhong Liang, “Two dimensional multidomain pseudospectral time-domain algorithm based on alternating-direction implicit method,” IEEE Trans. Antennas Propagat., vol. 54, no. 4, pp. 1207-1214, Apr. 2006.(中科院2区)

[42]  Changhong Liang, Long Li, and Tao Su, “Analysis of resonance problems of arbitrarily complicated transmission line cavities by using complex phase angle theory,” IEEE Antennas and Wireless Propagation Letters, vol. 5, pp. 76-79, 2006.

[43]  Yan Shi, Long Li and Changhong Liang, “Multidomain pseudospectral time-domain algorithm based on super-time-stepping method,” IEE Proceeding – Antennas, Microwaves Propagation, vol. 153, no. 1, pp. 55-60, Feb. 2006.