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Dr

Tong'en Lin

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Overview

Availability

Dr Tong'en Lin is:
Available for supervision

Qualifications

  • Masters (Coursework) of Chemical Engineering, The University of Queensland
  • Doctor of Philosophy, The University of Queensland

Works

Search Professor Tong'en Lin’s works on UQ eSpace

50 works between 2018 and 2025

41 - 50 of 50 works

2020

Journal Article

Lattice distortion induced internal electric field in TiO2 photoelectrode for efficient charge separation and transfer

Hu, Yuxiang, Pan, Yuanyuan, Wang, Zhiliang, Lin, Tongen, Gao, Yuying, Luo, Bin, Hu, Han, Fan, Fengtao, Liu, Gang and Wang, Lianzhou (2020). Lattice distortion induced internal electric field in TiO2 photoelectrode for efficient charge separation and transfer. Nature Communications, 11 (1) 2129, 2129. doi: 10.1038/s41467-020-15993-4

Lattice distortion induced internal electric field in TiO2 photoelectrode for efficient charge separation and transfer

2020

Journal Article

MXene derived TiS2 nanosheets for high-rate and long-life sodium-ion capacitors

Tang, Jiayong, Huang, Xia, Lin, Tongen, Qiu, Tengfei, Huang, Hengming, Zhu, Xiaobo, Gu, Qinfen, Luo, Bin and Wang, Lianzhou (2020). MXene derived TiS2 nanosheets for high-rate and long-life sodium-ion capacitors. Energy Storage Materials, 26, 550-559. doi: 10.1016/j.ensm.2019.11.028

MXene derived TiS2 nanosheets for high-rate and long-life sodium-ion capacitors

2020

Journal Article

Design of twin junction with solid solution interface for efficient photocatalytic H2 production

Huang, Hengming, Wang, Zhiliang, Luo, Bin, Chen, Peng, Lin, Tongen, Xiao, Mu, Wang, Songcan, Dai, Baoying, Wang, Wei, Kou, Jiahui, Lu, Chunhua, Xu, Zhongzi and Wang, Lianzhou (2020). Design of twin junction with solid solution interface for efficient photocatalytic H2 production. Nano Energy, 69 104410, 1-9. doi: 10.1016/j.nanoen.2019.104410

Design of twin junction with solid solution interface for efficient photocatalytic H2 production

2020

Journal Article

Faster activation and slower capacity/voltage fading: a bifunctional urea treatment on lithium‐rich cathode materials

Lin, Tongen, Schulli, Tobias U., Hu, Yuxiang, Zhu, Xiaobo, Gu, Qinfen, Luo, Bin, Cowie, Bruce and Wang, Lianzhou (2020). Faster activation and slower capacity/voltage fading: a bifunctional urea treatment on lithium‐rich cathode materials. Advanced Functional Materials, 30 (13) 1909192, 1-10. doi: 10.1002/adfm.201909192

Faster activation and slower capacity/voltage fading: a bifunctional urea treatment on lithium‐rich cathode materials

2020

Journal Article

Designing efficient Bi2Fe4O9 photoanodes via bulk and surface defect engineering

Monny, Sabiha Akter, Wang, Zhiliang, Lin, Tongen, Chen, Peng, Luo, Bin and Wang, Lianzhou (2020). Designing efficient Bi2Fe4O9 photoanodes via bulk and surface defect engineering. Chemical Communications, 56 (65), 9376-9379. doi: 10.1039/d0cc04455e

Designing efficient Bi2Fe4O9 photoanodes via bulk and surface defect engineering

2019

Journal Article

Multifunctional effects of sulfonyl-anchored, dual-doped multilayered graphene for high areal capacity lithium sulfur batteries

Rana, Masud, He, Qiu, Luo, Bin, Lin, Tongen, Ran, Lingbing, Li, Ming, Gentle, Ian and Knibbe, Ruth (2019). Multifunctional effects of sulfonyl-anchored, dual-doped multilayered graphene for high areal capacity lithium sulfur batteries. ACS Central Science, 5 (12) acscentsci.9b01005, 1946-1958. doi: 10.1021/acscentsci.9b01005

Multifunctional effects of sulfonyl-anchored, dual-doped multilayered graphene for high areal capacity lithium sulfur batteries

2019

Journal Article

Hollow structured cathode materials for rechargeable batteries

Zhu, Xiaobo, Tang, Jiayong, Huang, Hengming, Lin, Tongen, Luo, Bin and Wang, Lianzhou (2019). Hollow structured cathode materials for rechargeable batteries. Science Bulletin, 65 (6), 496-512. doi: 10.1016/j.scib.2019.12.008

Hollow structured cathode materials for rechargeable batteries

2019

Journal Article

Polyethylenimine expanded graphite oxide enables high sulfur loading and long-term stability of lithium-sulfur batteries

Huang, Xia, Zhang, Kai, Luo, Bin, Hu, Han, Sun, Dan, Wang, Songcan, Hu, Yuxiang, Lin, Tongen, Jia, Zhongfan and Wang, Lianzhou (2019). Polyethylenimine expanded graphite oxide enables high sulfur loading and long-term stability of lithium-sulfur batteries. Small, 15 (29) 1804578, 1804578. doi: 10.1002/smll.201804578

Polyethylenimine expanded graphite oxide enables high sulfur loading and long-term stability of lithium-sulfur batteries

2019

Journal Article

Sandwich‐like ultrathin TiS 2 nanosheets confined within N, S codoped porous carbon as an effective polysulfide promoter in lithium‐sulfur batteries

Huang, Xia, Tang, Jiayong, Luo, Bin, Knibbe, Ruth, Lin, Tongen, Hu, Han, Rana, Masud, Hu, Yuxiang, Zhu, Xiaobo, Gu, Qinfen, Wang, Dan and Wang, Lianzhou (2019). Sandwich‐like ultrathin TiS 2 nanosheets confined within N, S codoped porous carbon as an effective polysulfide promoter in lithium‐sulfur batteries. Advanced Energy Materials, 9 (32) 1901872, 1901872. doi: 10.1002/aenm.201901872

Sandwich‐like ultrathin TiS 2 nanosheets confined within N, S codoped porous carbon as an effective polysulfide promoter in lithium‐sulfur batteries

2018

Journal Article

Recent advances on Fe- and Mn-based cathode materials for lithium and sodium ion batteries

Zhu, Xiaobo, Lin, Tongen, Manning, Eric, Zhang, Yuancheng, Yu, Mengmeng, Zuo, Bin and Wang, Lianzhou (2018). Recent advances on Fe- and Mn-based cathode materials for lithium and sodium ion batteries. Journal of Nanoparticle Research, 20 (6) 160. doi: 10.1007/s11051-018-4235-1

Recent advances on Fe- and Mn-based cathode materials for lithium and sodium ion batteries

Funding

Current funding

  • 2026
    Development of fast-chargeable and long-endurance graphite anode for lithium-ion batteries
    UQ Deputy Vice-Chancellor (Research) Strategic Initiatives
    Open grant
  • 2025 - 2027
    Strategic graphite materials for fast-chargeable and long-endurance lithium-ion batteries
    Advance Queensland Industry Research Fellowships
    Open grant

Past funding

  • 2024
    Developing fast chargeable graphite materials as lithium-ion battery anodes based on Graphinex's SPG materials
    Graphinex Pty Ltd
    Open grant

Supervision

Availability

Dr Tong'en Lin is:
Available for supervision

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Supervision history

Current supervision

Media

Enquiries

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