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Dr

Hellen Jin

Email: 
Phone: 
+61 7 334 67989

Overview

Availability

Dr Hellen Jin is:
Available for supervision

Qualifications

  • Doctor of Philosophy, Beijing Jiaotong University

Works

Search Professor Hellen Jin’s works on UQ eSpace

79 works between 2002 and 2025

21 - 40 of 79 works

2019

Journal Article

Graphene-based transparent conducting electrodes for high efficiency flexible organic photovoltaics: elucidating the source of the power losses

Wang, Xiao, Zhang, Dingdong, Jin, Hui, Poliquit, Beta Zenia, Philippa, Bronson, Nagiri, Ravi Chandra Raju, Subbiah, Jegadesan, Jones, David J., Ren, Wencai, Du, Jinhong, Burn, Paul L. and Yu, Junsheng (2019). Graphene-based transparent conducting electrodes for high efficiency flexible organic photovoltaics: elucidating the source of the power losses. Solar RRL, 3 (5) 1900042. doi: 10.1002/solr.201900042

Graphene-based transparent conducting electrodes for high efficiency flexible organic photovoltaics: elucidating the source of the power losses

2019

Journal Article

9,9′-Bifluorenylidene-diketopyrrolopyrrole donors for non-polymeric solution processed solar cells

Chandrasekharan, Ajeesh, Jin, Hui, Stolterfoht, Martin, Gann, Eliot, McNeill, Christopher R., Hambsch, Mike and Burn, Paul L. (2019). 9,9′-Bifluorenylidene-diketopyrrolopyrrole donors for non-polymeric solution processed solar cells. Synthetic Metals, 250, 79-87. doi: 10.1016/j.synthmet.2019.02.015

9,9′-Bifluorenylidene-diketopyrrolopyrrole donors for non-polymeric solution processed solar cells

2019

Journal Article

Flexible ITO-free organic photovoltaics on ultra-thin flexible glass substrates with high efficiency and improved stability

Wang, Xiao, Jin, Hui, Nagiri, Ravi C. R., Poliquit, Beta Z. L., Subbiah, Jegadesan, Jones, David J., Kopidakis, Nikos, Burn, Paul L. and Yu, Junsheng (2019). Flexible ITO-free organic photovoltaics on ultra-thin flexible glass substrates with high efficiency and improved stability. Solar RRL, 3 (4) 1800286, 1800286. doi: 10.1002/solr.201800286

Flexible ITO-free organic photovoltaics on ultra-thin flexible glass substrates with high efficiency and improved stability

2019

Journal Article

Solution-processed, fullerene-free organic ultraviolet photodetectors using thermally activated delayed fluorescence materials as electron acceptor

Wang, Xiao, Zhou, Dianli, Wang, Hanyu, Jin, Hui and Yu, Junsheng (2019). Solution-processed, fullerene-free organic ultraviolet photodetectors using thermally activated delayed fluorescence materials as electron acceptor. Journal of Physics D-Applied Physics, 52 (2) 025106, 025106. doi: 10.1088/1361-6463/aae958

Solution-processed, fullerene-free organic ultraviolet photodetectors using thermally activated delayed fluorescence materials as electron acceptor

2019

Journal Article

A double support layer for facile clean transfer of two-dimensional materials for high-performance electronic and optoelectronic devices

Zhang, Dingdong, Du, Jinhong, Hong, Yi-Lun, Zhang, Weimin, Wang, Xiao, Jin, Hui, Burn, Paul L., Yu, Junsheng, Chen, Maolin, Sun, Dong-Ming, Li, Meng, Liu, Lianqing, Ma, Lai-Peng, Cheng, Hui-Ming and Ren, Wencai (2019). A double support layer for facile clean transfer of two-dimensional materials for high-performance electronic and optoelectronic devices. ACS Nano, 13 (5), 5513-5522. doi: 10.1021/acsnano.9b00330

A double support layer for facile clean transfer of two-dimensional materials for high-performance electronic and optoelectronic devices

2018

Journal Article

Semitransparent indium-tin-oxide-free non-fullerene organic photodetectors with double-side ultraviolet selective responses

Wang, Xiao, Wang, Hanyu, Zhou, Dianli, Jin, Hui and Yu, Junsheng (2018). Semitransparent indium-tin-oxide-free non-fullerene organic photodetectors with double-side ultraviolet selective responses. Materials Letters, 230, 289-292. doi: 10.1016/j.matlet.2018.07.121

Semitransparent indium-tin-oxide-free non-fullerene organic photodetectors with double-side ultraviolet selective responses

2018

Journal Article

Loss mechanisms in fullerene-based low-donor content organic solar cells

Jiang, Wei, Jin, Hui, Stolterfoht, Martin, Shaw, Paul E., Nagiri, Ravi Chandra Raju, Kopidakis, Nikos and Burn, Paul L. (2018). Loss mechanisms in fullerene-based low-donor content organic solar cells. The Journal of Physical Chemistry C, 122 (36) acs.jpcc.8b05783, 20611-20618. doi: 10.1021/acs.jpcc.8b05783

Loss mechanisms in fullerene-based low-donor content organic solar cells

2018

Journal Article

Application of an A-A'-A-Containing acceptor polymer in sequentially deposited all-polymer solar cells

Fang, Yuan, Jin, Hui, Raynor, Aaron, Wang, Xiao, Shaw, Paul E., Kopidakis, Nikos, McNeill, Christopher R. and Burn, Paul L. (2018). Application of an A-A'-A-Containing acceptor polymer in sequentially deposited all-polymer solar cells. ACS Applied Materials & Interfaces, 10 (28), 24046-24054. doi: 10.1021/acsami.8b05875

Application of an A-A'-A-Containing acceptor polymer in sequentially deposited all-polymer solar cells

2018

Journal Article

Interface engineering of solution-processed hybrid organohalide perovskite solar cells

Zhang, Shanshan, Stolterfoht, Martin, Armin, Ardalan, Lin, Qianqian, Zu, Fengshuo, Sobus, Jan, Jin, Hui, Koch, Norbert, Meredith, Paul, Burn, Paul L. and Neher, Dieter (2018). Interface engineering of solution-processed hybrid organohalide perovskite solar cells. ACS Applied Materials and Interfaces, 10 (25), 21681-21687. doi: 10.1021/acsami.8b02503

Interface engineering of solution-processed hybrid organohalide perovskite solar cells

2018

Journal Article

Investigating charge generation in polymer:non-fullerene acceptor bulk heterojunction films

Stoltzfus, Dani M., Larson, Bryon W., Zarrabi, Nasim, Shaw, Paul E., Clulow, Andrew J., Jin, Hui, Burn, Paul L., Gentle, Ian R. and Kopidakis, Nikos (2018). Investigating charge generation in polymer:non-fullerene acceptor bulk heterojunction films. Organic Electronics, 55, 177-186. doi: 10.1016/j.orgel.2018.01.017

Investigating charge generation in polymer:non-fullerene acceptor bulk heterojunction films

2017

Journal Article

Effect of capping group on the properties of non-polymeric diketopyrrolopyrroles for solution-processed bulk heterojunction solar cells

Chandrasekharan, Ajeesh, Hambsch, Mike, Jin, Hui, Maasoumi, Fatemeh, Shaw, Paul E., Raynor, Aaron, Burn, Paul L., Lo, Shih-Chun, Meredith, Paul and Namdas, Ebinazar B. (2017). Effect of capping group on the properties of non-polymeric diketopyrrolopyrroles for solution-processed bulk heterojunction solar cells. Organic Electronics, 50, 339-346. doi: 10.1016/j.orgel.2017.08.008

Effect of capping group on the properties of non-polymeric diketopyrrolopyrroles for solution-processed bulk heterojunction solar cells

2017

Journal Article

A triarylamine-based anode modifier for efficient organohalide perovskite solar cells

Lin, Qianqian, Jiang, Wei, Zhang, Shanshan, Nagiri, Ravi Chandra Raju, Jin, Hui, Burn, Paul L. and Meredith, Paul (2017). A triarylamine-based anode modifier for efficient organohalide perovskite solar cells. ACS Applied Materials and Interfaces, 9 (10), 9096-9101. doi: 10.1021/acsami.6b15147

A triarylamine-based anode modifier for efficient organohalide perovskite solar cells

2017

Journal Article

Efficient organic photovoltaic cells on a single layer graphene transparent conductive electrode using MoOx as an interfacial layer

Du, J. H., Jin, H., Zhang, Z. K., Zhang, D. D., Jia, S., Ma, L. P., Ren, W. C., Cheng, H. M. and Burn, P. L. (2017). Efficient organic photovoltaic cells on a single layer graphene transparent conductive electrode using MoOx as an interfacial layer. Nanoscale, 9 (1), 251-257. doi: 10.1039/c6nr06942h

Efficient organic photovoltaic cells on a single layer graphene transparent conductive electrode using MoOx as an interfacial layer

2016

Journal Article

Impact of dimerization on phase separation and crystallinity in bulk heterojunction films containing non-fullerene acceptors

Stoltzfus, Dani M., Clulow, Andrew J., Jin, Hui, Burn, Paul L. and Gentle, Ian R. (2016). Impact of dimerization on phase separation and crystallinity in bulk heterojunction films containing non-fullerene acceptors. Macromolecules, 49 (12), 4404-4415. doi: 10.1021/acs.macromol.6b00984

Impact of dimerization on phase separation and crystallinity in bulk heterojunction films containing non-fullerene acceptors

2016

Journal Article

Electric field and mobility dependent first-order recombination losses in organic solar cells

Stolterfoht, Martin, Shoaee, Safa, Armin, Ardalan, Jin, Hui, Kassal, Ivan, Jiang, Wei, Burn, Paul and Meredith, Paul (2016). Electric field and mobility dependent first-order recombination losses in organic solar cells. Advanced Energy Materials, 7 (4) 1601379, 1601379. doi: 10.1002/aenm.201601379

Electric field and mobility dependent first-order recombination losses in organic solar cells

2015

Journal Article

Charge transport without recombination in organic solar cells and photodiodes

Stolterfoht, Martin, Philippa, Bronson, Shoaee, Safa, Jin, Hui, Jiang, Wei, White, Ronald D., Burn, Paul L., Meredith, Paul and Pivrikas, Almantas (2015). Charge transport without recombination in organic solar cells and photodiodes. The Journal of Physical Chemistry C, 119 (48), 26866-26874. doi: 10.1021/acs.jpcc.5b09058

Charge transport without recombination in organic solar cells and photodiodes

2015

Journal Article

Bulk heterojunction thickness uniformity – a limiting factor in large area organic solar cells?

Jin, Hui, Armin, Ardalan, Hambsch, Mike, Lin, Qianqian, Burn, Paul L. and Meredith, Paul (2015). Bulk heterojunction thickness uniformity – a limiting factor in large area organic solar cells?. Physica Status Solidi A: Applications and Materials Science, 212 (10), 2246-2254. doi: 10.1002/pssa.201532353

Bulk heterojunction thickness uniformity – a limiting factor in large area organic solar cells?

2015

Journal Article

Efficient, large area, and thick junction polymer solar cells with balanced mobilities and low defect densities

Armin, Ardalan, Hambsch, Mike, Wolfer, Pascal, Jin, Hui, Li, Jun, Shi, Zugui, Burn, Paul L. and Meredith, Paul (2015). Efficient, large area, and thick junction polymer solar cells with balanced mobilities and low defect densities. Advanced Energy Materials, 5 (3) 1401221, 1-7. doi: 10.1002/aenm.201401221

Efficient, large area, and thick junction polymer solar cells with balanced mobilities and low defect densities

2014

Journal Article

Improved stability of non-ITO stacked electrodes for large area flexible organic solar cells

Hambsch, Mike, Jin, Hui, Clulow, Andrew J., Nelson, Andrew, Yamada, Norifumi L., Velusamy, Marappan, Yang, Qingyi, Zhu, Furong, Burn, Paul L., Gentle, Ian R. and Meredith, Paul (2014). Improved stability of non-ITO stacked electrodes for large area flexible organic solar cells. Solar Energy Materials and Solar Cells, 130, 182-190. doi: 10.1016/j.solmat.2014.06.032

Improved stability of non-ITO stacked electrodes for large area flexible organic solar cells

2014

Journal Article

Comparison of the effect of hydrogen incorporation and oxygen vacancies on the properties of anatase TiO2: electronics, optical absorption, and interaction with water

Jin, Hui, Wang, Lianzhou, Searles, Debra J. and Sun, Chenghua (2014). Comparison of the effect of hydrogen incorporation and oxygen vacancies on the properties of anatase TiO2: electronics, optical absorption, and interaction with water. Chinese Science Bulletin, 59 (18), 2175-2180. doi: 10.1007/s11434-014-0229-2

Comparison of the effect of hydrogen incorporation and oxygen vacancies on the properties of anatase TiO2: electronics, optical absorption, and interaction with water

Funding

Past funding

  • 2021 - 2022
    Large dielectric constant thin film solar cells
    Universities Australia - Germany Joint Research Co-operation Scheme
    Open grant
  • 2018 - 2021
    Lossless upscaling of perovskite solar cells by embedded metal grids
    University of New South Wales
    Open grant
  • 2011
    Improving the efficiency of plastic solar cells by the down-conversion
    UQ Early Career Researcher
    Open grant

Supervision

Availability

Dr Hellen Jin is:
Available for supervision

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Supervision history

Current supervision

Media

Enquiries

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