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CMP
Credit: Jack Hobhouse

Dr. Sam Teale

Junior Research Fellow

Sub department

  • Condensed Matter Physics

Research groups

  • Photovoltaic & Optoelectronic Device Group
sam.teale@physics.ox.ac.uk
Robert Hooke Building
  • About
  • Publications

Large piezoelectric response in a Jahn-Teller distorted molecular metal halide

Nature Communications Nature Research 14:1 (2023) 1852

Authors:

Sasa Wang, Asif Abdullah Khan, Sam Teale, Jian Xu, Darshan H Parmar, Ruyan Zhao, Luke Grater, Peter Serles, Yu Zou, Tobin Filleter, Dwight S Seferos, Dayan Ban, Edward H Sargent

Abstract:

Here, the authors utilise a combination of quasi-spherical theory and Jahn-Teller distortion to enhance the piezoelectric response of molecular metal halides, and the resulting piezoelectric energy harvesters exhibit superior power densities to the best-reported molecular hybrid energy harvesters

Bifunctional Electron-Transporting Agent for Red Colloidal Quantum Dot Light-Emitting Diodes

Journal of the American Chemical Society American Chemical Society (ACS) 145:11 (2023) 6428-6433

Authors:

Ya-Kun Wang, Haoyue Wan, Jian Xu, Yun Zhong, Eui Dae Jung, So Min Park, Sam Teale, Muhammad Imran, You-Jun Yu, Pan Xia, Yu-Ho Won, Kwang-Hee Kim, Zheng-Hong Lu, Liang-Sheng Liao, Sjoerd Hoogland, Edward H Sargent

Regulating surface potential maximizes voltage in all-perovskite tandems

Nature Springer Nature 613:7945 (2023) 676-681

Authors:

Hao Chen, Aidan Maxwell, Chongwen Li, Sam Teale, Bin Chen, Tong Zhu, Esma Ugur, George Harrison, Luke Grater, Junke Wang, Zaiwei Wang, Lewei Zeng, So Min Park, Lei Chen, Peter Serles, Rasha Abbas Awni, Biwas Subedi, Xiaopeng Zheng, Chuanxiao Xiao, Nikolas J Podraza, Tobin Filleter, Cheng Liu, Yi Yang, Joseph M Luther, Stefaan De Wolf, Mercouri G Kanatzidis, Yanfa Yan, Edward H Sargent

Germanium silicon oxide achieves multi-coloured ultra-long phosphorescence and delayed fluorescence at high temperature

Nature Communications Nature Research 13:1 (2022) 4438

Authors:

Huai Chen, Mingyang Wei, Yantao He, Jehad Abed, Sam Teale, Edward H Sargent, Zhenyu Yang

Abstract:

Colour-tuned phosphors are promising for advanced security applications such as multi-modal anti-counterfeiting and data encryption. The practical adoption of colour-tuned phosphors requires these materials to be responsive to multiple stimuli (e.g., excitation wavelength, excitation waveform, and temperature) and exhibit excellent materials stability simultaneously. Here we report germanium silicon oxide (GSO) - a heavy-metal-free inorganic phosphor - that exhibits colour-tuned ultra-long phosphorescence and delayed fluorescence across a broad temperature range (300 - 500鈥塊) in air. We developed a sol-gel processing strategy to prepare amorphous oxides containing homogeneously dispersed Si and Ge atoms. The co-existence of Ge and Si luminescent centres (LC) leads to an excitation-dependent luminescence change across the UV-to-visible region. GSO exhibits Si LC-related ultra-long phosphorescence at room-temperature and thermally activated delayed fluorescence at temperatures as high as 573鈥塊. This long-lived PL is sensitized via the energy transfer from Ge defects to Si LCs, which provides PL lifetime tunability for GSO phosphors. The oxide scaffold of GSO offers 500-day materials stability in air; and 1-week stability in strong acidic and basic solutions. Using GSO/polymer hybrids, we demonstrated colour-tuned security tags whose emission wavelength and lifetime can be controlled via the excitation wavelength, and temperature, indicating promise in security applications.This work was supported by the National Natural Science Foundation of China (21905316, 22175201) and the Science and Technology Planning Project of Guangdong Province (2019A050510018). Z.Y. would like to acknowledge financial support from Sun Yat-sen University. M.W., J.A., S.T., and E.H.S. acknowledge the financial support from the Natural Sciences and Engineering Research Council (NSERC) of Canada. We thank Prof. B. Huang (Sun Yat-sen University) and Prof. B. Xu (South China Normal University) for their assistance with temperature-dependent PL studies. L. Wei is thanked for the figure design. The synchrotron studies were financially supported by the Natural Sciences and Engineering Research Council (NSERC) of Canada. This research used resources of the SGM (11ID-1) beamline at the Canadian Light Source. The authors thank Dr. Tom Regier and Dr. Jay Dynes from SGM beamline for the assistance in conducting XAS measurements

Quantum-size-tuned heterostructures enable efficient and stable inverted perovskite solar cells

Nature Photonics Springer Nature 16:5 (2022) 352-358

Authors:

Hao Chen, Sam Teale, Bin Chen, Yi Hou, Luke Grater, Tong Zhu, Koen Bertens, So Min Park, Harindi R Atapattu, Yajun Gao, Mingyang Wei, Andrew K Johnston, Qilin Zhou, Kaimin Xu, Danni Yu, Congcong Han, Teng Cui, Eui Hyuk Jung, Chun Zhou, Wenjia Zhou, Andrew H Proppe, Sjoerd Hoogland, Fr茅d茅ric Laquai, Tobin Filleter, Kenneth R Graham, Zhijun Ning, Edward H Sargent

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