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Gong Z.△(学生一作), Wang R.△(学生一作), Yu F. M.△(学生一作), Wan C. X., Yang X. R., and Wang Z. G.*, "High-Energy Nitrogen Rings Stabilized by Superatomic Properties", Adv. Energy Mater., 2024, 2303446;
Yu F. M.(学生一作), Yang X. R., Li R. H., Liu R., Wan C. X., Dai Y.*, and Wang Z. G.*, "Super-defects in superatomic crystals", Acta Materialia, 2024, 275, 120047;
Liu R. (学生一作), Yang X. R., Yu F. M., Zhang D. P., Wang L., Zhou R. H.*, and Wang Z. G.*, "Electronic correlations influence on the anomalous constitutive law between the structure and spectra of hydrogen bonds", Phys. Rev. Research, 2024, 6, L032019 (Letter);
Yang X. R. (学生一作), Yu F. M., Wang L., Liu R., Xin Y., Li R., Shi Y. L., and Wang Z. G.*, "Two co-existing and opposing mechanisms of proton transfer in one-dimensional open-end water chains", J. Chem. Phys., 2024, 160, 194904;
Xin Y. (学生一作), Yang X. R., Wan C. X., Wang R., Zhu Y., Yi Y., Zhang Z. W., Tang Y. J. *, Chen Q. *, and Wang Z. G.*, "Confinement effects of mandrel degradation in ICF target fabrication", J. Chem. Phys., 2024, 160, 164702;
Yu F. M.(学生一作), Li R., Yang X. R., Shi Y. L.*, and Wang Z. G.*, "Superatomic-based chirality: Asymmetric structures constructed by superatoms", Aggregate, 2024, 5, e539 (Highlight by ChemistryViews);
Li R. (学生一作), Shi Y. L.*, Yu F. M., Wang R., Yan H. T., Teo B. K.*, and Wang Z. G.*, "Superatomic-based chirality: Asymmetric structures constructed by superatoms”, Energy Environ. Mater. 2024, 7, e12754;
Yang X. R.(学生一作), Zhang D. P., Liu R., Wang L., Liu J. Y.*, and Wang Z. G.*, "Rapid Thalidomide Racemization Is Related to Proton Tunneling Reactions via Water Bridges", J. Phys. Chem. Lett., 2023, 14, 10592−10598;
Wang L.△(学生一作), Cheng W.△(学生一作), Yang X. R., Wang R., Liu R., Zhu Y.*, Yi Y., Tang Y. J., Wang Z. G.*, "An atomic insight into reaction pathways and temperature effects in the degradation of polyethylene, polypropylene and polystyrene", Polymer Degradation and Stability, 2023, 215, 110450;
Liu R. △(学生一作), Zhang Z. Y. △(学生一作), Yan L. X., Yang X. R., Zhu Y., Su P. F.*, Song H. J.*, and Wang Z. G.*, "The Influence of Hydrogen Bonds on the Roaming Reaction", J. Phys. Chem. Lett., 2023, 14, 9351−9356;
Wang R.(学生一作), Liu Z. H., Yu F. M., Li J. R., Wang Z. G.*, "High-pressure-induced electronic and structural transition of superatoms", J. Chem. Phys., 2023, 158, 244702 (AIPP公众号亮点介绍);
Li J. R.(学生一作), Wang R., Huang W. R., Zhu Y., Teo B. K.*, and Wang Z. G.*, "Smallest Endohedral Metallofullerenes [Mg@C20]n (n = 4, 2, 0, −2, and −4): Endo-Ionic Interaction in Superatoms", J. Phys. Chem. Lett., 2023, 14, 2862–2868;
Wang R.(学生一作), Yang X. R., Huang W. R., Liu Z. H., Zhu Y., Liu H. Y.*, and Wang Z. G.*, "Superatomic states under high pressure", iScience, 2023, 26, 106281;
Huang W. R.(学生一作), Yu F. M., Zhu Y., Wang R., Li J. R., Zhang S. X.-A.*, and Wang Z. G.*, “Z”-type tilted quasi-one-dimensional assembly of actinide-embedded coinage metal near-plane superatoms and their optical properties, Adv. Sci., 2023, 10, 2206899;
Liu R. (学生一作), Wang R., Li D. H., Zhu Y., Yang X. R., Wang Z. G.*, "An ab initio study on boundaries for characterizing cooperative effect of hydrogen bonds by intermolecular compression", Chin. Chem. Lett., 2023, 34, 107857;
Yu F. M.(学生一作),Liu Z. H., Li J. R., Huang W. R., Yang X. R., and Wang Z. G.*, “Bottom-up design and assembly with superatomic building blocks”, Chin. Phys. B, 2022, 31, 128107 (Highlight);
Huang W. R.△(学生一作), Zhang Q. Y.△(学生一作), Wang R., Liu Z. H., Zhu Y., Yu F. M., Teo B. K.*, and Wang Z. G.*, "Super-Excimer: Anomalous Bonding in a Metastable Excited-State Dimer of Superatomic Dimers", J. Phys. Chem. Lett., 2022, 13, 8455–8461;
Yu F. M.(学生一作), Zhu Y., Gao Y., Wang R., Huang W. R., Gao Y.*, and Wang Z. G.*, "Direct assembly between closed-shell coinage metal superatoms", Nano Research, 2022, 15, 8665-8672;
Chen Q.△, Zhu Y.△(学生一作), Zhang Z. W., Ma, J. J., He, Z. B.*, and Wang Z. G.*, "Initiator enhancement of mandrel degradation for ICF target fabrication", iScience, 2022, 25, 104733;
Wu X. C.△(学生一作), Yu F. M.△(学生一作), Xie W. Y., Liu Z., Wang Z. G.*, and Zhang S. B.*, "High-Stability Light-Element Magnetic Superatoms Determined by Hund's Rule", J. Phys. Chem. Lett. 2022, 13, 2632−2637;
Liu Y., Wang R., Wang Z. G., Li D.*, Cui T.* "Formation of twelve-fold iodine coordination at high pressure", Nat. Commun., 2022, 13, 412;
Zhu Y.(学生一作), Yang X. R., Yu F. M., Wang R., Chen Q., Zhang Z. W. *, and Wang Z. G.*, “Quantum tunneling of hydrogen atom transfer affects mandrel degradation in ICF target fabrication”, iScience, 2022, 25, 103674;
Liu Z.(学生一作), Wu X. C., Zhu Y., Wang R., Yu F. M., and Wang Z. G.*, “Superatomic Rydberg state excitation”, J. Phys. Chem. Lett., 2021, 12, 11766-11771;
Zhai C. G., Yin X., Niu S. F. Yao M. G.*, Hu S. H., Dong J. J., Shang Y. C., Wang Z. G., Li Q. J., Sundqvist B., Liu B. B.*, "Molecular insertion regulates the donor-acceptor interactions in cocrystals for the design of piezochromic luminescent materials", Nat. Commun. 2021, 12, 4084;
Cheng A. H.△(学生一作), Wang R.△(学生一作), Liu Z., Liu R., Huang W. R., and Wang Z. G.*, “Charge “skin behavior” of gold superatoms”, J. Phys. Chem. Lett., 2021, 12, 8713-8719;
Zhang D. P.(学生一作), Yang X. R., Jiang W. R., Jin L., Gao Y. * and Wang Z. G.*, "Pauli Repulsion Enhances Mobility of Ultraconfined Water", ACS Nano, 2021, 15, 2, 2490-2496;
Jin L. (学生一作), Zhang D. P., Zhu Y., Yang X. R., Gao Y., and Wang Z. G.*, "A step-by-step process-induced unidirectional oriented water wire in the nanotube", J. Phys. Chem. Lett., 2021, 12, 350-354;
Li D. H. (学生一作), Zhang Z. Y., Jiang W. R., Zhu Y., Gao Y.*, and Wang Z. G.*, "The uncooperative effect of hydrogen bond on water dimer". Chin. Phys. Lett., 2021, 38, 013101 (Editors' Suggestion);
Zhang Q. Y. (学生一作), Gao Y., Wang R., Zhu Y., Xie W. Y., Schreckenbach G.*, and Wang Z. G.*, "Interaction potential energy surface between superatoms", Chem. Commun., 2020, 56, 14681-14684;
Liu M. J.△,Zhang D. P.(学生一作), Han J -L, Liu C. B.*, Ding Y. C., Wang Z. G.*, Wang A. -J.*, "Adsorption enhanced photocatalytic degradation sulfadiazine antibiotic using porous carbon nitride nanosheets with carbon vacancies", Chemical Engineering Journal. 2020, 382, 123017;