Publications

  • 15. Chen, C.-H., Chen, H.-K., Huang, W.-H., Chen, C.-L., Choojun, K., Sooknoi, T., Tian, H.-K.*, & Lin, Y.-C.* (2023). Reversal of methanation-oriented to RWGS-oriented Ni/SiO2 catalysts by the exsolution of Ni2+ confined in silicalite-1. Green Chemistry 25(19), 7582–7597. (IF: 9.8).
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  • 14. Wang, L.-C., Chiou, P.-Y., Hsu, Y.-P., Lee, C.-L., Hung, C.-H., Wu, Y.-H., Wang, W.-J., Hsieh, G.-L., Chen, Y.-C., Chang, L.-C., Su, W.-P., Manoharan, D., Liao, M.-C., Thangudu, S., Li, W.-P.*, Su, C.-H.*, Tian, H.-K.*, & Yeh, C.-S.* (2023). Prussian blue analog with separated active sites to catalyze water driven enhanced catalytic treatments. Nature Communications, 14(1), 4709. (IF: 16.6)
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  • 13. Lu, F.-F., Tian, H.-K.* (2023). Dopant-induced modulation of lithium-ion conductivity in cubic garnet solid electrolytes: a first-principles study. Physical Chemistry Chemical Physics, 25(28), 18973–18982. (IF:3.3)
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  • 12. Trangwachirachai, K., Huang, A. L., Chen, H. K., Chen, C. L., Lee, J. F., Tian, H. K.*, & Lin, Y. C.* (2023). Reduction of supported GaN and its application in methane conversion. Materials Today Chemistry, 30, 101500. (IF:7.3)
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  • 11. Gu, Y. J., Lo, Y. A., Li, A. C., Chen, Y. C., Li, J. H., Wang, Y. sen, Tian, H. K.*, Kaveevivitchai, W.*, & Kung, C. W.* (2022). A Single Potassium-Ion Conducting Metal-Organic Framework. ACS Applied Energy Materials, 5(7), 8573–8580. (IF:6.4)
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  • 10. Gao, B., Jalem, R., Tian, H. K., & Tateyama, Y. (2022). Revealing Atomic-Scale Ionic Stability and Transport around Grain Boundaries of Garnet Li7La3Zr2O12 Solid Electrolyte. Advanced Energy Materials, 12(3). (IF:27.8)
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  • 9. Jalem, R., Gao, B., Tian, H. K., & Tateyama, Y. (2022). Theoretical study on stability and ion transport property with halide doping of Na3SbS4 electrolyte for all-solid-state batteries. Journal of Materials Chemistry A, 10(5), 2235–2248. (IF:11.9)
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  • 8. Muto, S., Yamamoto, Y., Sakakura, M., Tian, H. K., Tateyama, Y., & Iriyama, Y. (2022). STEM-EELS Spectrum Imaging of an Aerosol-Deposited NASICON-Type LATP Solid Electrolyte and LCO Cathode Interface. ACS Applied Energy Materials, 5(1), 98–107. (IF:6.4)
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  • 7. Tian, H. K., Jalem, R., Matsui, M., Mandai, T., Somekawa, H., & Tateyama, Y. (2021). Tuning the performance of a Mg negative electrode through grain boundaries and alloying toward the realization of Mg batteries. Journal of Materials Chemistry A, 9(27), 15207–15216. (IF:14.511)
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  • 6. Tian, H. K., Jalem, R., Gao, B., Yamamoto, Y., Muto, S., Sakakura, M., Iriyama, Y., & Tateyama, Y. (2020). Electron and Ion Transfer across Interfaces of the NASICON-Type LATP Solid Electrolyte with Electrodes in All-Solid-State Batteries: A Density Functional Theory Study via an Explicit Interface Model. ACS Applied Materials and Interfaces, 12(49), 54752–54762. (IF:9.229)
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  • 5. Tian, H.-K., Chakraborty, A., Talin, A. A., Eisenlohr, P., & Qi, Y. (2020). Evaluation of The Electrochemo-Mechanically Induced Stress in All-Solid-State Li-Ion Batteries. Journal of The Electrochemical Society, 167(9), 090541. (IF:4.316)
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  • 4. Tian, H. K., Liu, Z., Ji, Y., Chen, L. Q., & Qi, Y. (2019). Interfacial Electronic Properties Dictate Li Dendrite Growth in Solid Electrolytes. Chemistry of Materials, 31(18), 7351–7359. (IF:9.567)
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  • 3. Tian, H. K., Xu, B., & Qi, Y. (2018). Computational study of lithium nucleation tendency in Li7La3Zr2O12 (LLZO) and rational design of interlayer materials to prevent lithium dendrites. Journal of Power Sources, 392, 79–86. (IF:7.467)
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  • 2. Tian, H.-K., & Qi, Y. (2017). Simulation of the Effect of Contact Area Loss in All-Solid-State Li-Ion Batteries. Journal of The Electrochemical Society, 164(11), E3512–E3521. (IF:3.662)
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  • 1. Xu, J., Tian, H.-K., Qi, J., Qi, Y., Zhang, Q., & Xiao, X. (2019). Mechanical and Electronic Stabilization of Solid Electrolyte Interphase with Sulfite Additive for Lithium Metal Batteries. Journal of The Electrochemical Society, 166(14), A3201–A3206. (IF:3.721)
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