论文/Article

论文/Article

Top journals are marked according to 2021 CAS Journal Rankings.
#: Contributed equally, *: Corresponding authors

2023

  1. Li, Q., Xiang, X., Yuan, X., Huang, Y.*, Wu, X.* (2023). Topological ventilated sound switch from acoustic Su-Schrieffer-Heeger model. Applied Physics Letters, 122(19), 191704. (IF = 3.791, top journal)
  2. Ye, Y., Wu, C., Kang, S., Huang, Y., Wu, X.* (2023). Reconfigurable Ultrasparse Ventilated Metamaterial Absorber. Under preparation

2022

  1. Wu, X.#, Fan, H.#, Liu, T., Gu, Z., Zhang, R.-Y., Zhu, J., and Zhang, X. (2022). Topological phononics arising from fluid-solid interactions. Nature Communications, 13, 6120. (IF = 14.919, top journal)
  2. Yuan, X., Li, Q., Xiang, X., Jiao, J., Huang, Y.*, Wu., X.*, (2022). Ultra-Broadband Metamaterial Silencer with Outstanding Heat-Transferring Performance. Physics of Fluids, 34(9), 096603. (IF = 3.521)
  3. Zhang, B., Luo, X., Lyu, Y., Wu, X.*, and Wen, W* (2022). A defect detection method for topological phononic materials based on few-shot learning. New Journal of Physics, 24, 083012. (IF = 3.729)
  4. Meng, Y., Wu, X., Shen, Y., Liu, D., Liang, Z., Zhang, X., Li, J. (2022). Non-Hermitian topological coupler for elastic waves, SCIENCE CHINA Physics, Mechanics & Astronomy, 65(2), 224611. (IF = 5.122, top journal)

2021

  1. Wu, X., Meng, Y., Hao, Y., Zhang, R.-Y., Li, J., and Zhang, X. (2021). Topological Corner Modes Induced by Dirac Vortices in Arbitrary Geometry. Physical Review Letters, 126(22), 226802. (IF = 9.161, top journal)
  2. Xiang, X., Tian, H., Huang, Y.*, Wu, X.*, and Wen, W. (2021). Manually tunable ventilated metamaterial absorbers. Applied Physics Letters, 118(5), 053504. (IF = 3.791, top journal)
  3. Tian, Hongxing, Xiang, X., He, K., Liu, C., Hou, S., Wang, S., Huang, Y.*, Wu, X.*, and Wen, W. (2021). Automatically Adaptive Ventilated Metamaterial Absorber for Environment with Varying Noises. Advanced Materials Technologies, 6(12), 2100668. (IF =7.848)
  4. Tang, X., Wu, X., and Wen, W. (2021). Force field nonlinear coupling and force/energy optimization in a field-induced system. Applied Physics Letters, 118(18), 183501. (IF = 3.791, top journal)

2020

  1. Wu, X., Li, X., Zhang, R.-Y., Xiang, X., Tian, J., Huang, Y., Wang,S., Hou, B., Chan, C. T., and Wen, W. (2020). Deterministic Scheme for Two-dimensional Type-II Dirac Points and Experimental Realization in Acoustics. Physical Review Letters, 124(7), 075501.(IF = 9.161, top journal)
  2. Xiang, X., Wu, X.*, Li, X., Wu, P., He, H., Mu, Q., Wang, S., Huang, Y., and Wen, W. (2020). Ultra-open ventilated metamaterial absorbers for sound-silencing applications in environment with free air flows. Extreme Mechanics Letters, 39, 100786. (IF = 4.567)
  3. Tian, J., Ribe, N. M., Wu, X., and Shum, H. C. (2020). Steady and Unsteady Buckling of Viscous Capillary Jets and Liquid Bridges. Physical Review Letters, 125(10), 104502. (IF = 9.161, top journal)

2019

  1. Wu, X., Li, Z., Chen, J., Li, X., Tian, J., Huang, Y., Wang, S., Lu, W., Hou, B., Chan, C. T., and Wen, W. (2019). Interlayer Topological Transport and Devices Based on Layer Pseudospins in Photonic Valley‐Hall Phases. Advanced Optical Materials, 7(20), 1900872. (IF = 9.926, top journal)
  2. Tian, J., Li, J., Sauret, A., Kong, T., Wu, X., Lu, Y., and Shum, H. C. (2019). Facile control of liquid-rope coiling with tunable electric field configuration. Physical Review Applied, 12(1), 014034. (IF = 4.985)
  3. Wu, P., Mu, Q., Wu, X., Wang, L., Li, X., Zhou, Y., Wang, S., Huang, Y., and Wen, W. (2019). Acoustic absorbers at low frequency based on split-tube metamaterials. Physics Letters A, 383(20), 2361-2366. (IF = 2.654)

2018

  1. Wu, X.#, Au-Yeung, K.#, Li, X., Roberts, R., Tian, J., Hu, C., Huang, Y., Wang, S., Yang, Z., and Wen, W. (2018). High-efficiency ventilated metamaterial absorber at low frequency. Applied Physics Letters, 112(10), 103505. (IF = 3.791, top journal. Citation ≥ 40)
  2. Hu, C.#, Wu, X.#, Tong, R., Wang, L., Huang, Y., Wang, S., Hou, B., and Wen, W. (2018). A metasurface with bidirectional hyperbolic surface modes and position sensing applications. NPG Asia aterials, 10, 417-428. (IF = 10.481, top journal)
  3. Meng, Y.#, Wu, X.#, Zhang, R., Li, X., Hu, P., Ge, L., Huang, Y., Xiang, H., Han, D., and Wen, W. (2018). Designing topological interface states in one-dimensional phononic crystals. New Journal of Physics, 20, 073032. (IF = 3.729)
  4. Li, X.#, Meng, Y.#, Wu, X.#, Yan, S., Huang, Y., Wang, S., and Wen, W. (2018) Su-Schrieffer-Heeger model inspired acoustic interface states and edge states. Applied Physics Letters, 113(20), 203501. (IF = 3.791, top journal)
  5. Hu, C., Li, Z., Tong, R., Wu, X., Xia, Z., Wang, L., Li, S., Huang, Y., Wang, S., Hou, B., Chan, C. T., Wen, W. (2018). Type-II Dirac photons at metasurfaces. Physical Review Letters, 121, 024301. (IF = 9.161, top journal)
  6. Wang, L., Wu, X., Zhang, R. Y., Xia, Z., Fu, C., Hou, B., and Wen, W. (2018). Near-perfect transmission through thick apertures by inserting connected ring resonators. Applied Physics A, 124(7), 509. (IF = 2.584)

2017

  1. Wu, X.#, Meng, Y.#, Tian, J., Huang, Y., Xiang, H., Han, D., and Wen, W. (2017). Direct Observation of Valley-polarized Topological Edge States in Designer Surface Plasmon Crystals. Nature Communications, 8, 1304. (IF = 14.919, top journal. Highly Cited Paper, citation ≥ 200)
  2. Tian, J., Gao, Y., Zhou, B., Cao, W., Wu, X., and Wen, W. (2017). A valve-free 2D concentration gradient generator. RSC Advances, 7(45), 27833-27839. (IF = 3.245)
  3. Wang, L., Hu, C., Wu, X., Xia, Z., and Wen, W. (2017). Multi-band metamaterial absorber with arbitrary polarization and wide-incident angle. Applied Physics A, 123(10), 651. (IF = 2.584)
  4. Xia, Z., Wu, X., Peng, G., Wang, L., Li, W., and Wen, W. (2017). A novel nickel nanowire based magnetorheological material. Smart Materials and Structures, 26(5), 054006. (IF = 3.585)
  5. Zhou, B., Gao, Y., Wu, X., and Wen, W. (2017). Control the drying configuration of suspensions via regulating the surface topologies for surface-enhanced Raman scattering optimization. Journal of Colloid and Interface Science, 502, 67-76. (IF = 8.128)

2016

  1. Wu, X.#, Fu, C.#, Li, X., Meng, Y., Gao, Y., Tian, J., Wang, L., Huang, Y., Yang, Z. and Wen, W. (2016). Low-frequency tunable acoustic absorber based on split tube resonators. Applied Physics Letters, 109(4), 043501. (IF = 3.791, top journal. Citation ≥ 50)
  2. Wu, X., Meng, Y., Wang, L., Tian, J., Dai, S. and Wen, W. (2016). Anisotropic metasurface with near-unity circular polarization conversion. Applied Physics Letters, 108(18), 183502. (IF = 3.791, top journal. Citation ≥ 50)
  3. Wu, X., Xia, X., Tian, J., Liu, Z. and Wen, W. (2016). Broadband reflective metasurface for focusing underwater ultrasonic waves with linearly tunable focal length. Applied Physics Letters, 108(16), 163502. (IF = 3.791, top journal)
  4. Meng, Y., Xiang, H., Zhang, R.Y., Wu, X., Han, D., Chan, C.T. and Wen, W. (2016). Topological interface states in multiscale spoof-insulator-spoof waveguides. Optics Letters, 41(16), 3698-3701. (IF = 3.776)

2015

  1. Gao, Y., Zhou, B., Wu, X., Gao, X., Zeng, X., Xie, J., Wang, C., Ye, Z., Wan, J. and Wen, W. (2015). Three dimensional and homogenous single cell cyclic stretch within a magnetic micropillar array (mMPA) for a cell proliferation study. ACS Biomaterials Science & Engineering, 2(1), 65-72. (IF = 4.749)
  2. Zhou, B., Gao, X., Wang, C., Ye, Z., Gao, Y., Xie, J., Wu, X. and Wen, W. (2015). Functionalized PDMS with Versatile and Scalable Surface Roughness Gradients for Cell Culture. ACS Applied Materials & Interfaces, 7(31), 17181-17187. (IF = 9.229)
  3. Wang, C., Gao, X., Gao, Y., Cao, W., Tian, J., Wu, X., Ye, Z., eng, X., Zhou, B., Wu, J. and Fang, Z. (2015). Controlled H2O2 release via long-lived electron–hole separation mediated to induce tumor cell apoptosis. Journal of Materials Chemistry B, 3(41), 8115-8122. (IF = 6.331)
  4. Zhou, B., Xu, W., Syed, A.A., Chau, Y., Chen, L., Chew, B., Yassine, O., Wu, X., Gao, Y., Zhang, J. and Xiao, X. (2015). Design and fabrication of magnetically functionalized flexible micropillar arrays for rapid and controllable microfluidic mixing. Lab on a Chip, 15(9), 2125-2132. (IF = 6.799)
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