代表性论文
[1] Zhu, R.#, Dong, X. R.#, Yang, B., Han, R. L., Mao, W., J., Chen, G.*, Zhang, Y., Zhang, Y.*, Dong, Z. C.*, Revealing single-molecule photocurrent generation mechanisms under on- and off-resonance excitation. Nano Letters, 25(1), 578-585 (2025).
[2] Han, Y.#, Dong, L.#, Zhu, L. Y.#, Hu, C. R., Li, H., Zhang, Y., Zhang, C.*, Zhang, Y.*, Dong, Z. C.*, Real-space spectral determination of short single-stranded DNA sequence structures. Journal of the American Chemical Society, 146(49), 33865-33873 (2024).
[3] Meng, Q. S.#, Zhang, J. X.#, Zhang, Y.*, Chu, W. Z., Mao, W. J., Zhang, Y., Yang, J. L., Luo, Y., Dong, Z. C.*, Hou, J. G.*, Local heating and Raman thermometry in a single molecule. Science Advances, 10(3), eadl1015 (2024).
[4] Luo, Y. #, Kong, F. F. #, Tian, X. J., Yu, Y. J., Jing, S. H., Zhang, C., Chen, G.*, Zhang, Y., Zhang, Y., Li, X. G., Zhang, Z. Y., Dong, Z. C.*, Anomalously bright single-molecule upconversion electroluminescence. Nature Communications, 15, 1677 (2024).
[5] Yang, B.#, Chen, G.#, Ghafoor, A., Zhang, Y. F., Zhang, X. B., Li, H., Dong, X. R., Wang, R. P., Zhang, Y., Zhang, Y., Dong, Z. C.*, Chemical enhancement and quenching in single-molecule tip-enhanced Raman spectroscopy. Angewandte Chemie International Edition, 62(13), e202218799 (2023).
[6] Itoh, T.*, Prochazka, M.*, Dong, Z. C.*, Ji, W., Yamamoto, Y. S., Zhang, Y., Ozaki, Y.*, Toward a new era of SERS and TERS at the nanometer scale: from fundamentals to innovative applications. Chemical Reviews, 123(4), 1552-1634 (2023).
[7] Kong, F. F.#, Tian, X. J. #, Zhang, Y.*, Zhang, Y., Chen, G., Yu, Y. J., Jing, S. H., Gao, H. Y., Luo, Y., Yang, J. L., Dong, Z. C.*, Hou, J. G.*, Wavelike electronic energy transfer in donor-acceptor molecular systems through quantum coherence. Nature Nanotechnology, 17(7), 729-736 (2022).
[8] Kong, F. F.#, Tian, X. J.#, Zhang, Y.*, Yu, Y. J., Jing, S. H., Zhang, Y., Tian, G. J.*, Luo, Y., Yang, J. L., Dong, Z. C.*, Hou, J. G., Probing intramolecular vibronic coupling through vibronic-state imaging. Nature Communications, 12, 1280 (2021).
[9] Xu, J. Y.#, Zhu, X.#, Tan, S. J.*, Zhang, Y., Li, B., Tian, Y. Z., Shan, H., Cui, X. F., Zhao, A. D., Dong, Z. C., Yang, J. L., Luo, Y., Wang, B.*, Hou, J. G.*, Determining structural and chemical heterogeneities of surface species at the single-bond limit. Science, 371(6531), 818-822 (2021).
[10] Wang, R. P.#, Yang, B.#, Fu, Q.#, Zhang, Y.*, Zhu, R., Dong, X. R., Zhang, Y., Wang, B., Yang, J. L., Luo, Y., Dong, Z. C.*, Hou, J. G.*, Raman detection of bond breaking and making of a chemisorbed up-standing single molecule at single-bond level. Journal of Physical Chemistry Letters, 12(7), 1961-1968 (2021)
[11] Yang, B.#, Chen, G.#, Ghafoor, A., Zhang, Y. F., Zhang, Y., Zhang, Y.*, Luo, Y., Yang, J. L., Sandoghdar, V., Aizpurua, J., Dong, Z. C.*, Hou, J. G.*, Sub-nanometre resolution in single-molecule photoluminescence imaging. Nature Photonics, 14(11), 693-699 (2020).
[12] Zhang, Y.#, Yang, B.#, Ghafoor, A., Zhang, Y., Zhang, Y. F., Wang, R. P., Yang, J. L., Luo, Y.*, Dong, Z. C.*, Hou, J. G.*, Visually constructing the chemical structure of a single molecule by scanning Raman picoscopy. National Science Review, 6(6), 1169-1175 (2019).
[13] Luo, Y.#, Chen, G.#, Zhang, Y.*, Zhang, L., Yu, Y. J., Kong, F. F, Tian, X. J, Zhang, Y., Shan, C. X., Luo, Y., Yang, J. L., Sandoghdar, V., Dong, Z. C.*, Hou, J. G.*, Electrically driven single-photon superradiance from molecular chains in a plasmonic nanocavity. Physical Review Letters, 122(23), 233901 (2019).
[14] Chen, G.#, Luo, Y.#, Gao, H. Y., Jiang, J., Yu, Y. J., Zhang, L., Zhang, Y., Li, X. G.*, Zhang, Z. Y.*, Dong, Z. C.*, Spin-triplet-mediated up-conversion and crossover behavior in single-molecule electroluminescence. Physical Review Letters, 122(17), 177401 (2019).
[15] Zhang, L.#, Yu, Y. J.#, Chen, L. G., Luo, Y., Yang, B., Kong, F. F., Chen, G., Zhang, Y.*, Zhang, Q., Luo, Y., Yang, J. L., Dong, Z. C.*, Hou, J. G.*, Electrically driven single-photon emission from an isolated single molecule. Nature Communications, 8, 580 (2017).
[16] Zhang, Y.#, Meng, Q. S.#, Zhang, L., Luo, Y., Yu, Y. J, Yang, B., Zhang, Y., Esteban, R., Aizpurua, J.*, Luo, Y., Yang, J. L., Dong, Z. C.*, Hou, J. G.*, Sub-nanometre control of the coherent interaction between a single molecule and a plasmonic nanocavity. Nature Communications, 8, 15225 (2017).
[17] Zhang, R.#, Zhang, X. B.#, Wang, H. F., Zhang, Y., Jiang, S., Hu, C. R., Zhang, Y., Luo, Y.*, Dong, Z. C.*, Distinguishing individual DNA bases in a network by non-resonant tip-enhanced Raman scattering. Angewandte Chemie International Edition, 56(20), 5561-5564 (2017).
[18] Richard-Lacroix, M.#, Zhang, Y.#, Dong, Z. C.*, Deckert, V.*, Mastering high resolution tip-enhanced Raman spectroscopy: towards a shift of perception. Chemical Society Reviews, 46(13), 3922-3944 (2017).
[19] Zhang, Y.#, Luo, Y.#, Zhang, Y.#, Yu, Y. J., Kuang, Y. M., Zhang, L., Meng, Q. S., Luo, Y., Yang, J. L., Dong, Z. C.*, Hou, J. G.*, Visualizing coherent intermolecular dipole-dipole coupling in real space. Nature, 531, 623-627 (2016).
[20] Liao, M. H., Jiang, S., Hu, C. R., Zhang, R., Kuang, Y. M., Zhu, J. Z., Zhang, Y., Dong, Z. C.*, Tip-enhanced Raman spectroscopic imaging of individual carbon nanotubes with subnanometer resolution. Nano Letters, 16(7), 4040-4046 (2016).
[21] Jiang, S., Zhang, Y., Zhang, R., Hu, C. R., Liao, M. H., Luo, Y., Yang, J. L., Dong, Z. C.*, Hou, J. G.*, Distinguishing adjacent molecules on a surface using plasmon-enhanced Raman scattering. Nature Nanotechnology, 10(10), 865-869 (2015).
[22] Duan, S., Tian, G. J., Ji, Y. F., Shao, J. S., Dong, Z. C., Luo, Y.*, Theoretical modeling of plasmon-enhanced Raman images of a single molecule with subnanometer resolution. Journal of the American Chemical Society, 137(30), 9515-9518 (2015).
[23] Zhang, R.# Zhang, Y.#, Dong, Z. C.*, Jiang, S., Zhang, C., Chen, L. G., Zhang, L., Liao, Y., Aizpurua, J., Luo, Y., Yang, J. L., Hou, J. G.*, Chemical mapping of a single molecule by plasmon-enhanced Raman scattering. Nature, 498(7452), 82-86 (2013).
[24] Zhu, S. E.#, Kuang, Y. M.#, Geng, F., Zhu, J. Z., Wang, C. Z., Yu, Y. J., Luo, Y., Xiao, Y., Liu, K. Q., Meng, Q. S., Zhang, L., Jiang, S., Zhang, Y., Wang, G. W.*, Dong, Z. C.*, Hou, J. G., Self-decoupled porphyrin with a tripodal anchor for molecular-scale electroluminescence. Journal of the American Chemical Society, 135(42), 15794-15800 (2013).
[25] Dong, Z. C.*, Zhang, X. L.#, Gao, H. Y.#, Luo, Y., Zhang, C., Chen, L. G., Zhang, R., Tao, X., Zhang, Y., Yang, J. L., Hou, J. G.*, Generation of molecular hot electroluminescence by resonant nanocavity plasmons. Nature Photonics, 4(1), 50-54 (2010).
[26] Dong, Z. C.*, Guo, X. L., Trifonov, A. S., Dorozhkin, P. S., Miki, K., Kimura, K., Yokoyama, S., Mashiko, S., Vibrationally resolved fluorescence from organic molecules near metal surfaces in a scanning tunneling microscope. Physical Review Letters, 92(8), 86801 (2004).