Kung-Shih Chen, Ph.D.

Affiliations: 
2014 Materials Science and Engineering University of Washington, Seattle, Seattle, WA 
Area:
organic and inorganic functional materials for photonics, opto-electronics, nanomedicine, and nanotechnology
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"Kung-Shih Chen"
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SNBCP

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Alex K.-Y. Jen grad student 2014 University of Washington
 (Processing and Optical Engineering of Polymer-Fullerene Solar Cells Towards High Efficiency and Environmentally Friendly Fabrication for Real-Life Applications.)
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Publications

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Yao K, Xin XK, Chueh CC, et al. (2015) Enhanced light-harvesting by integrating synergetic microcavity and plasmonic effects for high-performance ITO-free flexible polymer solar cells Advanced Functional Materials. 25: 567-574
Zuo L, Chueh CC, Xu YX, et al. (2014) Microcavity-enhanced light-trapping for highly efficient organic parallel tandem solar cells. Advanced Materials (Deerfield Beach, Fla.). 26: 6778-84
Chen KS, Yip HL, Salinas JF, et al. (2014) Strong photocurrent enhancements in highly efficient flexible organic solar cells by adopting a microcavity configuration. Advanced Materials (Deerfield Beach, Fla.). 26: 3349-54
Chueh CC, Yao K, Yip HL, et al. (2013) Non-halogenated solvents for environmentally friendly processing of high-performance bulk-heterojunction polymer solar cells Energy and Environmental Science. 6: 3241-3248
Chueh CC, Chien SC, Yip HL, et al. (2013) Toward high-performance semi-transparent polymer solar cells: Optimization of ultra-thin light absorbing layer and transparent cathode architecture Advanced Energy Materials. 3: 417-423
Schlenker CW, Chen KS, Yip HL, et al. (2012) Polymer triplet energy levels need not limit photocurrent collection in organic solar cells. Journal of the American Chemical Society. 134: 19661-8
Sun Y, Chien SC, Yip HL, et al. (2012) Improved thin film morphology and bulk-heterojunction solar cell performance through systematic tuning of the surface energy of conjugated polymers Journal of Materials Chemistry. 22: 5587-5595
Chen KS, Salinas JF, Yip HL, et al. (2012) Semi-transparent polymer solar cells with 6% PCE, 25% average visible transmittance and a color rendering index close to 100 for power generating window applications Energy and Environmental Science. 5: 9551-9557
Duan C, Hu X, Chen KS, et al. (2012) Fully visible-light-harvesting conjugated polymers with pendant donor-π-acceptor chromophores for photovoltaic applications Solar Energy Materials and Solar Cells. 97: 50-58
Chen KS, Yip HL, Schlenker CW, et al. (2012) Halogen-free solvent processing for sustainable development of high efficiency organic solar cells Organic Electronics: Physics, Materials, Applications. 13: 2870-2878
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