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Dr Zhong Zheng
Dr

Zhong Zheng

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Overview

Availability

Dr Zhong Zheng is:
Available for supervision

Qualifications

  • Doctor of Philosophy of Chemical Engineering, University of Sydney

Works

Search Professor Zhong Zheng’s works on UQ eSpace

14 works between 2021 and 2025

1 - 14 of 14 works

2025

Journal Article

Exceptionally low-coordinated bismuth–oxygen vacancy defect clusters for generating black In2O3 photocatalysts with superb CO2 reduction performance

Nekouei, Farzin, Pollock, Christopher J., Wang, Tianyi, Zheng, Zhong, Zhang, Yanzhao, Fusco, Zelio, Jin, Huanyu, Ramireddy, Thrinath Reddy, Wibowo, Ary Anggara, Lu, Teng, Nekouei, Shahram, Keshtpour, Farzaneh, Langley, Julien, Abdelkader, Elwy H., Cox, Nicholas, Yin, Zongyou, Nguyen, Hieu, Glushenkov, Alexey, Karuturi, Siva, Liu, Zongwen, Wei, Li, Li, Hao and Liu, Yun (2025). Exceptionally low-coordinated bismuth–oxygen vacancy defect clusters for generating black In2O3 photocatalysts with superb CO2 reduction performance. ACS Catalysis, 15 (3), 1431-1443. doi: 10.1021/acscatal.4c03491

Exceptionally low-coordinated bismuth–oxygen vacancy defect clusters for generating black In2O3 photocatalysts with superb CO2 reduction performance

2024

Journal Article

Advances and challenges in inorganic lithium solid electrolytes

Zheng, Zhong, Zhao, Hong, Knibbe, Ruth, Kotobuki, Masashi, Zhu, Xiaoyi, Lu, Li, Sun, Lixian and Liu, Zongwen (2024). Advances and challenges in inorganic lithium solid electrolytes. Chemistry of Inorganic Materials, 4 100078, 100078. doi: 10.1016/j.cinorg.2024.100078

Advances and challenges in inorganic lithium solid electrolytes

2024

Journal Article

Revealing epitaxial deposition in alkali metal batteries

Cooper, Emily, Otte, Joseph, Zheng, Zhong, Xia, Qingbing, Gentle, Ian R. and Knibbe, Ruth (2024). Revealing epitaxial deposition in alkali metal batteries. Nano Letters, 24 (47), 15085-15091. doi: 10.1021/acs.nanolett.4c04331

Revealing epitaxial deposition in alkali metal batteries

2023

Journal Article

Phase decomposition of AlCrFeCoNiCu0.5 HEA thin films by vacuum annealing

Zheng, Zhong, Zhao, Hong, Sun, Lixian, Liu, Yanping, Fu, Li, Bilek, Marcela M., Akhavan, Behnam and Liu, Zongwen (2023). Phase decomposition of AlCrFeCoNiCu0.5 HEA thin films by vacuum annealing. Surfaces and Interfaces, 43 103541, 1-10. doi: 10.1016/j.surfin.2023.103541

Phase decomposition of AlCrFeCoNiCu0.5 HEA thin films by vacuum annealing

2023

Journal Article

Effect of nitrogen pressure on the fabrication of AlCrFeCoNiCu0.5 high entropy nitride thin films via cathodic arc deposition

Jiang, Tenghao, Zhao, Hong, Tsoutas, Kostadinos, Sun, Lixian, Liu, Hongwei, Liu, Yanping, Xu, Fanjun, Zheng, Zhong, Bilek, Marcela M. and Liu, Zongwen (2023). Effect of nitrogen pressure on the fabrication of AlCrFeCoNiCu0.5 high entropy nitride thin films via cathodic arc deposition. Journal of Vacuum Science and Technology A, 41 (6) 063410, 1-11. doi: 10.1116/6.0003064

Effect of nitrogen pressure on the fabrication of AlCrFeCoNiCu0.5 high entropy nitride thin films via cathodic arc deposition

2023

Journal Article

Introducing a new heterogeneous nanocomposite thin film with superior mechanical properties and thermal stability

Zhao, Hong, Zheng, Zhong, Sun, Lixian, Liu, Hongwei, Tsoutas, Kostadinos, Akhavan, Behnam, Liu, Yanping, Bilek, Marcela M. and Liu, Zongwen (2023). Introducing a new heterogeneous nanocomposite thin film with superior mechanical properties and thermal stability. Materials and Design, 234 112333, 1-13. doi: 10.1016/j.matdes.2023.112333

Introducing a new heterogeneous nanocomposite thin film with superior mechanical properties and thermal stability

2023

Journal Article

The microstructural evolution of dual phase high entropy alloy thin films by annealing

Zheng, Zhong, Zhao, Hong, Sun, Lixian, Bilek, Marcela M. and Liu, Zongwen (2023). The microstructural evolution of dual phase high entropy alloy thin films by annealing. Journal of Alloys and Compounds, 953 170102, 1-9. doi: 10.1016/j.jallcom.2023.170102

The microstructural evolution of dual phase high entropy alloy thin films by annealing

2023

Journal Article

Enhanced strength of AlCoCrCu0.5FeNi high entropy alloy thin films reinforced by multi-phase hardening and nanotwins

Zheng, Zhong, Zhao, Hong, Akhavan, Behnam, Sun, Lixian, Liu, Hongwei, Tsoutas, Kostadinos, Liu, Yanping, Bilek, Marcela M. and Liu, Zongwen (2023). Enhanced strength of AlCoCrCu0.5FeNi high entropy alloy thin films reinforced by multi-phase hardening and nanotwins. Materials Science and Engineering: A, 879 145252, 1-10. doi: 10.1016/j.msea.2023.145252

Enhanced strength of AlCoCrCu0.5FeNi high entropy alloy thin films reinforced by multi-phase hardening and nanotwins

2023

Journal Article

High entropy alloy thin films on SS304 substrates: Evolution of microstructure and interface modulated by energetic condensation in nanoscale

Zhao, Hong, Zheng, Zhong, Jiang, Tenghao, Fu, Li, Akhavan, Behnam, Bilek, Marcela M. and Liu, Zongwen (2023). High entropy alloy thin films on SS304 substrates: Evolution of microstructure and interface modulated by energetic condensation in nanoscale. Materials & Design, 230 111981, 1-11. doi: 10.1016/j.matdes.2023.111981

High entropy alloy thin films on SS304 substrates: Evolution of microstructure and interface modulated by energetic condensation in nanoscale

2023

Journal Article

Cathodic arc deposition of high entropy alloy thin films with controllable microstructure

Zhao, Hong, Zheng, Zhong, Zhou, Haoruo, Chang, Li, Tsoutas, Kostadinos, Yang, Limei, Alavi, Seyedeh KH, Liu, Yanping, Akhavan, Behnam, Bilek, Marcela M and Liu, Zongwen (2023). Cathodic arc deposition of high entropy alloy thin films with controllable microstructure. Surfaces and Interfaces, 37 102692, 1-10. doi: 10.1016/j.surfin.2023.102692

Cathodic arc deposition of high entropy alloy thin films with controllable microstructure

2023

Journal Article

The fabrication and growth mechanism of AlCrFeCoNiCu0.5 HEA thin films by substrate-biased cathodic arc deposition

Zhao, Hong, Zheng, Zhong, Akhavan, Behnam, Tsoutas, Kostadinos, Sun, Lixian, Zhou, Haoruo, Bilek, Marcela M. and Liu, Zongwen (2023). The fabrication and growth mechanism of AlCrFeCoNiCu0.5 HEA thin films by substrate-biased cathodic arc deposition. Scientific Reports, 13 (1) 198, 1-14. doi: 10.1038/s41598-022-26232-9

The fabrication and growth mechanism of AlCrFeCoNiCu0.5 HEA thin films by substrate-biased cathodic arc deposition

2022

Journal Article

Surface-Active Plasma-Polymerized Nanoparticles for Multifunctional Diagnostic, Targeting, and Therapeutic Probes

Haidar, Laura L., Baldry, Mark, Fraser, Stuart T., Boumelhem, Badwi Bob, Gilmour, Aaron D., Liu, Zongwen, Zheng, Zhong, Bilek, Marcela M. M. and Akhavan, Behnam (2022). Surface-Active Plasma-Polymerized Nanoparticles for Multifunctional Diagnostic, Targeting, and Therapeutic Probes. ACS Applied Nano Materials, 5 (12), 17576-17591. doi: 10.1021/acsanm.2c03213

Surface-Active Plasma-Polymerized Nanoparticles for Multifunctional Diagnostic, Targeting, and Therapeutic Probes

2022

Journal Article

InOOH-mediated intergrown heterojunctions for enhanced photocatalytic Performance: Assembly and interfacial charge carrier transferring

Nekouei, Farzin, Wen, Xiaoming, Zheng, Zhong, Sun, Qingbo, Lu, Teng, Orton, Henry, Kremer, Felipe, Nekouei, Shahram, Yuan, Tongwei, Abdelkader, Elwy H., Liu, Borui, Tricoli, Antonio, Otting, Gottfried, Liu, Zongwen, Frankcombe, Terry and Liu, Yun (2022). InOOH-mediated intergrown heterojunctions for enhanced photocatalytic Performance: Assembly and interfacial charge carrier transferring. Chemical Engineering Journal, 442 136355, 1-9. doi: 10.1016/j.cej.2022.136355

InOOH-mediated intergrown heterojunctions for enhanced photocatalytic Performance: Assembly and interfacial charge carrier transferring

2021

Journal Article

Nanostructured AlCoCrCu0.5FeNi high entropy oxide (HEO) thin films fabricated using reactive magnetron sputtering

Khan, Naveed. A., Akhavan, Behnam, Zheng, Zhong, Liu, Hongwei, Zhou, Cuifeng, Zhou, Haoruo, Chang, Li, Wang, Yu, Liu, Yanping, Sun, Lixian, Bilek, Marcela. M. and Liu, Zongwen (2021). Nanostructured AlCoCrCu0.5FeNi high entropy oxide (HEO) thin films fabricated using reactive magnetron sputtering. Applied Surface Science, 553 149491, 1-11. doi: 10.1016/j.apsusc.2021.149491

Nanostructured AlCoCrCu0.5FeNi high entropy oxide (HEO) thin films fabricated using reactive magnetron sputtering

Supervision

Availability

Dr Zhong Zheng is:
Available for supervision

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Media

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