Xiaoming Zhao

Affiliations: 
Princeton University, Princeton, NJ 
Area:
organic and hybrid optoelectronics
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"Xiaoming Zhao"
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Publications

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Liu T, Zhao X, Li J, et al. (2019) Enhanced control of self-doping in halide perovskites for improved thermoelectric performance. Nature Communications. 10: 5750
Zhao X, Yao C, Liu T, et al. (2019) Extending the Photovoltaic Response of Perovskite Solar Cells into the Near-Infrared with a Narrow-Bandgap Organic Semiconductor. Advanced Materials (Deerfield Beach, Fla.). e1904494
Zhao X, Liu T, Shi W, et al. (2019) Capillary-written single-crystalline all-inorganic perovskite microribbon arrays for highly-sensitive and thermal-stable photodetectors. Nanoscale
Zhao X, Tian L, Liu T, et al. (2019) Room-temperature-processed fullerene single-crystalline nanoparticles for high-performance flexible perovskite photovoltaics Journal of Materials Chemistry A. 7: 1509-1518
Jia Y, Wu S, Zhang Y, et al. (2019) Achieving non-doped deep-blue OLEDs by applying bipolar imidazole derivatives Organic Electronics. 69: 289-296
Jia Y, Zhang Y, Fan S, et al. (2019) A novel bipolar carbazole/ phenanthroimidazole derivative for high efficiency nondoped deep-blue organic light-emitting diodes Organic Electronics. 64: 259-265
Xia G, Liu H, Zhao X, et al. (2019) Seeding-method-processed anatase TiO2 film at low temperature for efficient planar perovskite solar cell Chemical Engineering Journal. 370: 1111-1118
Zhao X, Yao C, Liu T, et al. (2019) Perovskite Solar Cells: Extending the Photovoltaic Response of Perovskite Solar Cells into the Near‐Infrared with a Narrow‐Bandgap Organic Semiconductor (Adv. Mater. 49/2019) Advanced Materials. 31: 1970349
Zhao X, Liu T, Liu H, et al. (2018) Organic Single-Crystalline p-n Heterojunctions for High-Performance Ambipolar Field-Effect Transistors and Broadband Photodetectors. Acs Applied Materials & Interfaces
Zhao X, Liu T, Cui Y, et al. (2018) Antisolvent-assisted controllable growth of fullerene single crystal microwires for organic field effect transistors and photodetectors. Nanoscale
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