部门: 烟台研究院
学科:
职务:
职称: 副教授
指导资格: 硕士生导师
电话: 15065759560
传真:
邮箱: junnan.liu@hrbeu.edu.cn
邮编: 264006
地址: 山东省烟台市经济技术开发区青岛大街1号
2016.11.22-2016.11.26 在日本参加中子和介子学校(The neutron and muon school)获得优秀毕业生称号。 2017.10.1-2017.10.5 美国第232 届ECS大会学术报告: 修饰负膨胀材料来用作电池电极 (Novel Electrode Materials By Modification Route of Negative Thermal Expansion Materials) 2018.10.21-2018.10.26 第14届IUPAC International Conference on Novel Materials and their Synthesis (NMS-XIV) 作邀请汇报(invited presentation): 用化学电池修饰负膨胀材料产生一种新的固态合成方法(Investigating a new solid-state synthesis method by modifying negative thermal expansion materials using electrochemical cells) 2019.9.22-2019.9.26 IUMRS-ICA 2019 International Conference口头学术报告以及海报报告: 电池可以如何修饰负膨胀材料?产生新的相以及修饰热膨胀性能(What a battery can do for negative thermal expansion materials? New phases and modification the thermal expansion properties) |
Liu, J., Johannessen, B., Brand, H. E., Andersen, H. L., & Sharma, N. The Sc2WxMo 3−xO12 series as electrodes in alkali-ion batteries. CrystEngComm 2021, 23(21), 3880-3891. Liu, J.*; Sharma, N., Thermal Evolution and Phase Transitions in Electrochemically Activated Sc2(MoO4)3. Inorganic Chemistry 2019, 58 (15), 9964-9973. Liu, J.; Haworth, A. R.; Johnston, K. E.; Goonetilleke, D.; Sharma, N., Exploration of the high temperature phase evolution of electrochemically modified Sc2(WO4)3 via potassium discharge. Inorganic Chemistry Frontiers 2019, 6 (10), 2718-2726. Liu, J.; Andersen, H. L.; Al Bahri, O. K.; Bhattacharyya, S.; Rawal, A.; Brand, H. E.; Sharma, N., Electrochemically activated solid synthesis: an alternative solid-state synthetic method. Dalton Transactions 2018, 47 (41), 14604-14611. Liu, J.; Sheha, E.; El-Dek, S. I.; Goonetilleke, D.; Harguindeguy, M.; Sharma, N., SmFeO3 and Bi-doped SmFeO3 perovskites as an alternative class of electrodes in lithium-ion batteries. CrystEngComm 2018, 20 (40), 6165-6172. Su, B.; Wu, S.; Liang, H.; Zhou, W.; Liu, J.; Goonetilleke, D.; Sharma, N.; Sit, P. H. L.; Zhang, W.; Yu, D. Y. W., High-Performance NaVO3 with Mixed Cationic and Anionic Redox Reactions for Na-Ion Battery Applications. Chemistry of Materials 2020, 32 (20), 8836-8844. Su, B.; Liang, H.; Liu, J.; Wu, J.; Sharma, N.; Gu, Q.; Johannessen, B.; Denis, Y., Novel structurally-stable Na-rich Na4V2O7 cathode material with high reversible capacity by utilization of anion redox activity. Chemical Communications 2020, 56 (59), 8245-8248.
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