Jiangeng Xue, Ph.D.
Affiliations: | 2005 | Princeton University, Princeton, NJ |
Area:
Photonics and Optoelectronic MaterialsGoogle:
"Jiangeng Xue"Parents
Sign in to add mentorStephen R. Forrest | grad student | 2005 | Princeton | |
(Pure and mixed organic thin films and heterojunctions for optoelectronic applications.) |
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Publications
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Shen H, Lin Q, Cao W, et al. (2017) Efficient and long-lifetime full-color light-emitting diodes using high luminescence quantum yield thick-shell quantum dots. Nanoscale |
Starkenburg DJ, Johns PM, Baciak JE, et al. (2017) Thin film organic photodetectors for indirect X-ray detection demonstrating low dose rate sensitivity at low voltage operation Journal of Applied Physics. 122: 225502 |
Zhang F, Wang S, Wang L, et al. (2016) Super color purity green quantum dot light-emitting diodes fabricated by using CdSe/CdS nanoplatelets. Nanoscale |
Xue J, Li C, Xin L, et al. (2016) High-efficiency and low efficiency roll-off near-infrared fluorescent OLEDs through triplet fusion Chemical Science. 7: 2888-2895 |
Shen H, Cao W, Shewmon NT, et al. (2015) High-efficiency, low turn-on voltage blue-violet quantum-dot-based light-emitting diodes. Nano Letters. 15: 1211-6 |
Yang Y, Zheng Y, Cao W, et al. (2015) High-efficiency light-emitting devices based on quantum dots with tailored nanostructures Nature Photonics. 9: 259-265 |
Zhao X, Watkins DL, Galindo JF, et al. (2015) Hydrogen bond directed assembly of oligothiophene/fullerene superstructures on Au(1 1 1) Organic Electronics: Physics, Materials, Applications. 19: 61-69 |
Manders JR, Qian L, Titov A, et al. (2015) High efficiency and ultra-wide color gamut quantum dot LEDs for next generation displays Journal of the Society For Information Display. 23: 523-528 |
Shewmon NT, Watkins DL, Galindo JF, et al. (2015) Enhancement in Organic Photovoltaic Efficiency through the Synergistic Interplay of Molecular Donor Hydrogen Bonding and π-Stacking Advanced Functional Materials |
Fu W, Wang L, Ling J, et al. (2014) Highly efficient hybrid solar cells with tunable dipole at the donor-acceptor interface. Nanoscale. 6: 10545-50 |