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ODSOS Lab

Prof. Sheng Hsiung Chang

Brief Biography

Sheng Hsiung Chang  received the B. S. degree from the Department of Physics at National Chung Hsing University, Taichung, R.O.C., in 2002, the Master degree from the Institute of Optical Science at National Central University (NCU), Taoyuan, R.O.C., in 2004, and the Ph. D. degree from the Department of Electrical Engineering at NCU, Taoyuan, R.O.C., in 2008.

    From November 2008 to July 2012, he was a postdoctoral research fellow at the Modern Optical Spectroscopy Laboratory of Institute of Atomic and Molecular Sciences of Academia Sinica and the Department of Optics and Photonics of NCU. In August 2012, he joined the faculty of the Research Center for New Generation Photovoltaics of NCU, where he was an Assistant Research Fellow and was promoted to Associate Research Fellow. In March 2018, he joined the faculty of the Department of Physics of Chung Yuan Christian University (CYCU) as an Associate Professor. He was promoted to Professor at CYCU in August 2022. From August 2024 to July 2025, he was a Professor of the Department of Optoelectronics and Materials Technology of National Taiwan Ocean University as a Professor. In August 2025, he joined the Department of Optics and Photonics of National Central University as a Professor. His current research interests include organic HTL based halide perovskite solar cells, device physics of solar cells, plasmonic structures for manipulating lightwaves at nanoscales, and the femtosecond pulsed laser related topics.

    Dr. Chang is a member of the Phi Tau Phi Scholastic Honor Society (2004), Journal of TVS (Editorial Board), Nanotechnology (Advisory Panel: 2017-2019; Editorial Board: 2019-) and Processes (Editorial Board: 2022-). He was among the recipients of the R&D 100 Awards Winner in 2015. He was received the Outstanding Research Awards from the NCU for 2016 and 2017. He was received the MOST Special Outstanding Talent Award for 2018 and 2019. He was received the Publons Peer Review Awards 2018: Nanotechnology and Materials Science. In December 2020, He was received the Taiwan Vacuum Society Young Scientists Award 2020. In recent, he was received the Outstanding Research Awards from CYCU for 2021.

Editorial Board Memberships

Editorial Board Member-AIMS Energy (2025.05-)

Topical Advisory Panel Member - Polymers (2023.02-)

Editorial Board Member - Processes (2022.06-)

Committee Member-VEBLEO (2021-)

Editorial Board Member - Nanotechnology (2019-)

Advisory Panel Member - Nanotechnology (2017-2019)

Vice President - Taiwan Vacuum Society (2021.01-2024.12)

Secretary General  - Taiwan Vacuum Society (2019-2020)

Executive Editor - Journal of Taiwan Vacuum Society (2017-2019)

Guest Editor - Journal of Taiwan Vacuum Society 

Editorial Board Member-Physics Bimonthly of TPS (2020-)


Selected Publications (*: submitting & corresponding author)

2026

  1. Sheng Hsiung Chang, "An efficient orthogonal coupler for silicon photonics with the degenerate plasmonic modes", 2026, Nanotechnology, Accepted. (2024 IF: 2.8, Q2 in Physics, Applied)

  2. Jia-Ren Wu, Yi-Chun Huang, Anjali Chandel, Sheng Hsiung Chang*, "Novel wavelength selection effect based on the ring resonator mediated modal interference in a silicon waveguide", 2026, Journal of Physics: Photonics, vol. 8, p. 01LT02. (2024 IF: 8.4, 14/125 in Optics).

  3. Sheng Hsiung Chang*, "Efficient TM-pass polarizer based on Si waveguide via trapping the leakage TE mode", 2026, Journal of Physics: Photonics, vol. 8, p. 015060. (2024 IF: 8.4, Q1 in Optics)

  4. Sheng Hsiung Chang*, "Light extraction of oblique emissions via collecting the local quasi-mode evanescent wave at the subwavelength scale", 2026, Nanotechnology, vol. 37, p. 015201. (Q2 in Physics, Applied)


2025

  1. Sheng Hsiung Chang*, "Unraveling the ultra-broadband beam splitter based on parallel coupled waveguides", 2025, Journal of Physics: Photonics, vol. 7, p. 045037. (2024 IF: 8.4, Q1 in Optics)

  2. Anjali Chandel, Chia-Lung Tsai, SHeng Hsiung Chang*, "Tunable light emissions of PEAI-doped FA0.6Cs0.4Pb(I0.6Br0.4)3 thin films via manipulating self-healing and phase segregation effects", 2025, Journal of Luminescence, vol. 286, p. 121427. (Q2 in Optics)

  3. Sheng Hsiung Chang*, Po-Wen Tang, Tsong-Ru Tsai, Gia Wei Shu, Wei-Jen Hsueh, Wen-Ho Hsu, "Characterizzation of a femtosecond pulsded laser via analyzing the second harmonic generation in a III-V nitride semiconductor", 2025, Journal of Physics: Photonics, vol. 7, p. 035019. (2024 IF: 8.4, Q1 in Physics, Applied)

  4. Wen-Hsin Chang, Yi-Chun Huang, Anjali Chandel, Shou-En Chiang, Jia-Ren Wu, Sheng Hsiung Chang*, "Improved photovoltaic performance of un-doped FAPbI3 thin film based solar cells via de-trapping excitons", 2025, Chinese Journal of Physics, vol. 95, pp. 790-802.. (Q1 in Physics, Multidisplinary)

  5. Anjal Chandel, Po-Wen Tang, Sheng Hsiung Chang*, "Review on efficient P3CT and P3HT HTL based perovskite solar cells", 2025, Nanotechnology, vol. 36, p. 132004. (Q2 in Physics, Applied)


2024

  1. Yi-Chun Huang, I-Jane Yen, Chih-Hsien Tseng, Hui-Yu Wang, Anjali Chandel, Sheng Hsiung Chang*, "Structural and excitonic properties of the polycrystalline FAPbI3 thin films, and their photovoltaic responses", 2024, Nanotechnology, vol. 35, p. 505706. (2023 IF: 2.9, Q2 in Physics, Applied)

  2. Jia-Ren Wu, Anjali Chandel, Chiashain Chung, Sheng Hsiung Chang*, "Efficient optical coupling between dielectric strip waveguides and a plasmonic trench waveguide", 2024, Photonics, vol. 11, p. 608. (2023 IF: 2.1, Q2 in Optics)

  3. Chia-Lung Tsai, S. N. Manjunatha, Mukta Sharama, Sheng Hsiung Chang*, Yu-Li Hsieh, Liann-Be Chang, Chun-Huan Chang, "Enhancing the photovoltaic responses of MAPbI3 poly-crystalline perovskite films via adjusting the properties of PEDOT:PSS hole transport material with a low-polarity solvent treatment process", 2024, Materials Science in Semiconductor Processing, vol. 176, p. 108355. (2022 IF: 4.1).

  4. Diksha Thakur, Sheng Hsiung Chang*, "Material properties and optoelectronic applications of lead halide perovskite thin films ", 2024, Synthetic Metals, vol. 301, p. 117535. (2022 IF: 4.4)

  5. Chia-Chen Lin, Shou-En Chiang, Jia-Ren Wu, Yi-Chun Huang, Sheng Hsiung Chang*, "Optically tunable dielectric response of TiO2:MAPbI3 nanocomposite thin films", 2024, Journal of Alloys and Compounds, vol. 970, p. 172274. (2022 IF: 6.2)


2023

  1. Sheng Hsiung Chang*, Xiangbo Meng*, Jian Liu*, Dung-Sheng Tsai*, Xinwei Wang*, Chiashian Chuang*, Cheng-Ying Chen*, Ai-Dong Li*, "Editorial for focus on manipulations of atomic and molecular layers and its applications in energy, environment sciences and optoelectronic devices", 2023, Nanotechnology, vol. 34, p. 500201. (2022 IF: 3.5).

  2. Anjali Chandel, Shou-En Chiang, Wen-Hsin Chang, Jia-Ren Wu, Chi-Tsu Yuan, Sheng Hsiung Chang*, "Effects of bendable P3CT polymers layer on the photovoltaic performance of perovskite solar cells", 2023, Nanotechnology, vol. 34, p. 405401. (2022 IF: 3.5)

  3. Chia-Lung Tsai*, S. N. Manjunatha, Sheng Hsiung Chang*, Ming-Jer Jeng, Liann-Be Chang, Chun-Huan Chang, Mukta Sharma, Chi-Tsu Yuan, “Properties of FAPbI3-Based Alloy Perovskite Thin Films and Their Application in Solar Cells”, 2023 , Processes , vol.11 , p.1450. (2021 IF: 3.352)

  4. Anjali Chandel, Qi Bin Ke, Shou-En Chiang, Hsin-Ming Cheng*, Sheng Hsiung Chang*, "Effects of drying time on the formation of merged and soft MAPbI3 grains and their photovoltaic responses", 2023, Nanoscale Advances, vol. 5, pp. 2190-2198. (2021 IF: 5.598)

  5. Shou-En Chiang, Wen-Hsin Chang, Yu-Ting Chen, Wen-Chung Li, Chi-Tsu Yuan, Ji-Lin Shen, Sheng Hsiung Chang*, "Dislocation characterization in c-plane GaN epitaxial layers on 6 inch Si wafer with a fast second-harmonic generation intensity mapping technique", 2023, Nanotechnology, vol. 34, p. 155705. (2021 IF: 3.953)

  6. Shou-En Chiang; Pei-Chen Lin; Jia-Ren Wu; Sheng Hsiung Chang* , “Improving the photovoltaic performance of inverted perovskite solar cells via manipulating the molecular packing structure of PCBM” , 2023 , Nanotechnology, vol. 34, p. 015401. (2021 IF: 3.953)


2022

  1. D. Thakur, Q.-B. Ke, S.-E. Chiang, T.-H. Tseng, K.-B. Cai, C.-T. Yuan, J.-S. Wang, Sheng Hsiung Chang*, "Stable and efficient soft perovskite film based solar cells prepared with a facile encapsulation method" 2022, Nanoscale, vol. 14, pp. 17625-17634. (2021 IF: 8.307)

  2. Y.-S. Liao, J.-R. Wu, D. Thakur, J.-S. Hsu, R. P. Dwivedi, Sheng Hsiung Chang*, "Power loss reduction of angled metallic wedge plasmonic waveguides via the interplay between near-field optical coupling and modal coupling" 2022, Photonics, vol. 6, p. 663. (2021 IF: 2.536)

  3. Q. B. Ke, A. Chandel, C.-C. Lin, S.-Y. Liu, S.-E. Chiang, J.-R. Wu, Sheng Hsiung Chang*, "Conformal loading effects of P3CT-Na polymers on the performance of inverted perovskite solar cells " 2022, Processes, vol. 10, p. 1444. (2021 IF: 3.352)

  4. A. Chandel, Q. B. Ke, S.-E. Chiang, Sheng Hsiung Chang*, "Improving device performance of MAPbI3 photovoltaic cells by manipulating the crystal orientation of tetragonal perovskites" 2022, Nanotechnology, vol. 34, p. 415405. (2021 IF: 3.953)

  5. Q. B. Ke#, J.-R. Wu#, S.-E. Chiang, C.-C. Cheng, Y.-W. Su, I.-J. Hsu, J.-M. Yeh, Sheng Hsiung Chang*, "Improved performance of PCBM/MAPbI3 heterojunction photovoltaic cells with the treatment of a saturated BCP/IPA solution" 2022, Sol. Energy Mater. & Sol. Cells, vol. 242, p. 111782. (2021 IF: 7.305)

  6. Q. B. Ke, J.-R. Wu, C.-C. Lin, Sheng Hsiung Chang*, "Understanding the PEDOT:PSS, PTAA and P3CT-X hole-transport-layer-based inverted perovskite solar cells" 2022, Polymers, vol. 14, p. 823. (2021 IF: 4.967)

  7. A. Chandel, Q. B. Ke, D. Thakur, S.-E. Chiang, J.-R. Wu, K.-B. Cai, C.-T. Yuan, Sheng Hsiung Chang*, "Regioregularity effects of p-type P3CT-Na polymers on inverted perovskite photovoltaic cells" 2022, Organic Electronics, vol. 102, p. 106449. (2021 IF: 3.868)

  8. D. Thakur, S.-E. Chiang, M.-H. Yang, J.-S. Wang, Sheng Hsiung Chang*, "Self-stability of un-encapsulated polycrystalline MAPbI3 solar cells via the formation of chemical bonds between C60 molecules and MA cations" 2022, Solar Energy Materials and Solar Cells, vol. 235, p. 111454. (2021 IF: 7.305)


2021

  1. Sheng Hsiung Chang*, K.-R. Cheng, A. Chandel, J.-R. Wu, J.-L. Shen, S.-H. Chen, "Stable and efficient graded MA0.83Cs0.17Pb(I0.83Br0.17)3 alloy thin film based inverted-type perovskite solar cells" 2021, Energy Technology, vol. 9, p. 2100607. (2020 IF: 3.631)

  2. A. Chandel, J.-R. Wu, D. Thakur, S. Kassou, S.-E. Chiang, K.-J. Cheng, C.-Y. Li, Y.-S. Yen, S.-H. Chen, Sheng Hsiung Chang*, "Improvement of interfacial contact for efficient PCBM/MAPbI3 planar heterojunction solar cells with a binary antisolvent mixture treatment" 2021, Nanotechnology, vol. 32, p. 485401. (2020 IF: 3.874)

  3. D. Thakur, M.-L. Hsieh, S.-E. Chiang, Y.-S. Yen, W.-R. Liu, Sheng Hsiung Chang*, "Stable and high-efficiency P3CT-Na based MAPbI3 solar cells with a graphene quantum-dots down-converter" 2021, Solar Energy, vol. 225, pp. 882-891. (2020 IF: 5.742)

  4. C.-Y. Li, A. Chandel, J.-R. Wu, D. Thakur, S.-E. Chiang, K.-J. Cheng, S.-H. Chen, J.-L. Shen, Sheng Hsiung Chang*, "Highly efficient and stable P3CT-Na based MAPbI3 solar cells with a Sn-rich ITO anode" 2021, Solar Energy Materials & Solar Cells, vol. 231, p. 111305. (2020 IF: 7.267)

  5. Said Kassou#, Jia-Ren Wu#, Diksha Thakur, Anjali Chandel, Shou-En Chiang, Kai-Jen Cheng, Sheng-Hui Chen, Ji-Lin Shen, Sheng Hsiung Chang* , “Efficiency improvement of P3CT-Na based MAPbI3 solar cells with a simple wetting process ” , 2021 , Nanotechnology, vol. 32, p. 345402 (2020 IF: 3.874)

  6. S.-E. Chiang, Q.-B. Ke, A. Chandel, H.-M. Cheng, Y.-S. Yen, J.-L. Shen, Sheng Hsiung Chang*, "19% efficient P3CT-Na based MAPbI3 solar cells with a simple double-filtering process", 2021, Polymers, vol. 13, p. 886. (2020 IF: 4.329).

  7. S.-E. Chiang, A. Chandel, D. Thakur, Y.-T. Chen, P.-C. Lin, J.-R. Wu, K.-B. Cai, S. Kassou, J.-M. Yeh, C.-T. Yuan, J.-L. Shen, Sheng Hsiung Chang*, “On the role of solution-processed bathocuproine in high-efficiency inverted perovskite solar cells”, 2021, Solar Energy, vol. 218, pp. 142-149. (2020 IF: 5.742) 

  8. C.-J. Chen, A. Chandel, D. Thakur, J.-R. Wu, S.-E. Chiang, G.-S. Zeng, J.-L. Shen, S.-H. Chen, Sheng Hsiung Chang*, "Ag modified bathocuproine: ZnO nanoparticles electron buffer layer based bifacial inverted-type perovskite solar cells", 2021, Organic Electronics, vol. 92, p. 106110. (2020 IF: 3.721)

  9. Y.-T. Chen, A. Chandel, J.-R. Wu, Sheng Hsiung Chang*, "Coupled periodically electric quadrupoles assisted ultra-broadband light-extraction enhancement of red GaN LEDs by manipulating the field orthogonality at nanoscales", 2021, Chinese Journal of Physics, vol. 70, pp. 188-195. (2020 IF: 3.237)

  10. C.-Y. Li, Y.-S. Liao, D. Thakur, A. Chandel, S.-E. Chiang, J.-R. Wu, P.-H. Lee, C.-L. Tsai, C.-C. Yang, Y.-L. Zhong, J.-L. Shen, Sheng Hsiung Chang*, "Anti-solvent mixture-mediated reduction of photocurrent hysteresis in high-impurity perovskite precursor based MAPbI3 solar cells", 2021, Solar Energy, vol. 214, pp. 86-92. (2020 IF: 5.742)

  11. D. Thakur#, J.-R. Wu#, A. Chandel, K.-R. Cheng, S.-E. Chiang, K.-B. Cai, S.-H. Chen, C.-C. Yang, Y.-L. Zhong, C.-T. Yuan, J.-H. Shen, Sheng Hsiung Chang*, "Structural, optical and excitonic properties of urea grading doped CH3NH3PbI3 thin films and their application in inverted-type perovskite solar cells", 2021, Journal of Alloys and Compounds, vol. 858, p. 157660.  (2020 IF: 5.316)

  12. Y.-S. Liao, P.-H. Lee, H.-Q. Shen, J.-R. Wu, Sheng Hsiung Chang*, “Wedge angle-dependent propagation characteristics of two coupled semi-infinite Au rib nanoplasmonic waveguides”, 2021, Plasmonics, vol. 16, pp. 227-232. (2020 IF: 2.404) 


2020

  1. J.-R. Wu, S. Kassou, D. Thakur, R. P. Dwivedi, Sheng Hsiung Chang*, "Wavelength-dependent optical chiralities of symmetric and asymmetric 2-shaped Au-nanorod structures at nanoscales" 2020, Plasmonics, vol. 15, pp. 2053-2059. (2020 IF: 2.404) 

  2. D. Thakur, J.-R. Wu, A. Chandel, S.-Y.-Liu, P.-C. Lin, D. Luo, J.-M. Yeh, H.-M. Cheng, Sheng Hsiung Chang*, "Highly efficient solar-heat shield based on the bipolaron-assisted PEDOT:PSS thin film" 2020, Chinese Journal of Physics, vol. 66, pp. 102-108. (2020 IF: 3.237) 

  3. Sheng Hsiung Chang*, P.-C. Tseng, S.-E. Chiang, J.-R. Wu, Y.-T. Chen, C.-J. Chen, C.-T. Yuan, S.-H. Chen, "Structural, optical and excitonic properties of MAxCs1-xPb(IxBr1-x)3 alloy thin films and their application in solar cells" 2020, Solar Energy Materials & Solar Cells, vol. 210, p. 110478. (2020 IF: 7.267)

  4. C.-L. Tsai, Y.-C. Lu, S.-E. Chiang, C.-M. Yu, H.-M. Cheng, C.-L. Hsu, K. Y. Chiu, Sheng Hsiung Chang*, "Bright and fast-response perovskite light-emitting diodes with a ICBA:modified-C60 nanocomposite electrical confinement layer" 2020, Nanoscale, vol. 12, pp. 4061-4068. (2020 IF: 7.790)

  5. S.-E. Chiang#, J.-R. Wu#, H.-M. Cheng, C.-L. Hsu, J.-L. Shen, C.-T. Yuan, Sheng Hsiung Chang*, "Origins of the s-shape characteristic in J-V curve of inverted-type perovskite solar cells " 2020, Nanotechnology, vol. 31, p. 115403. (2020 IF: 3.874)


2019

  1. J.-R. Wu#, D. Thakur#, S.-E. Chiang, A. Chandel, J.-S. Wang, K.-C. Chiu, Sheng Hsiung Chang*, "The way to pursue truly high-performance perovskite solar cells," 2019, Nanomaterials, vol. 9, p. 1269. (2020 IF: 5.076)

  2. Sheng Hsiung Chang*, S.-D. Wong, H.-Y. Huang, C.-T. Yuan, J.-R. Wu, S.-E. Chiang, Z.-L. Tseng, S.-H. Chen, "Effects of the washing-enhanced nucleation process on the material properties and performance of perovskite solar cells," 2019, Journal of Alloys and Compounds, vol. 808, p. 151723. (2020 IF: 5.316)

  3. Y.-T. Chen, J.-R. Wu, D. Thakur, H.-M. Cheng, Sheng Hsiung Chang*, "Efficiency enhancement of light extraction from an air/GaN interface via nanogap-induced mode splitting," 2019, Advanced Theory and Simulations, vol. 2, p. 1900073. (2020 IF: 4.004)

  4. M.-K. Lai, J.-R. Wu, R.-M. Yeh, Sheng Hsiung Chang*, "Unraveling the modified PEDOT:PSS thin films based near-infrared solar-heat shields by using broadband transmittance and Raman scattering spectrometers," 2019, Phys. Status Solidi A, vol. 216, p. 1900025.  (2020 IF: 1.981)


2018

  1. K.-M. Lee; K.-S. Chen; J.-R. Wu; Y.-D. Lin; S.-M. Yu; Sheng Hsiung Chang*, “Highly efficient and stable semi-transparent perovskite solar modules with a trilayer anode electrode”, 2018, Nanoscale, vol. 10, p. 17699-17704. (2020 IF: 7.790)

  2. Sheng Hsiung Chang*; W.-C. Huang; C.-C. Chen; S.-H. Chen; C.-G. Wu, “Effects of anti-solvent (iodobenzene) volume on the formation of CH3NH3PbI3 thin films and their application in photovoltaic cells”, 2018, Applied Surface Science, vol. 445 , p. 24-29. (2020 IF: 6.707) 

  3. K. Y. Chiu, Sheng Hsiung Chang*, W.-C. Huang, H.-M. Cheng, H. Shaw, S.-C. Yeh, C.-T. Chen, Y. Oliver Su., S.-H. Chen and C.-G. Wu, “Functional graded fullerene derivatives for improving the fill factor and device stability of inverted-type perovskite solar cells”, 2018, Nanotechnology, vol. 29 , p. 305701-305701. (2020 IF: 3.874)

  4. Chia-Lung Tsai;Yi-Chen Lu;Sheng Hsiung Chang*, “Enhancement of photocurrent extraction and electron injection in dual-functional CH3NH3PbBr3 perovskite-based optoelectronic devices via interfacial engineering”, 2018, Nanotechnology, vol. 29, p. 275704-275704. (2020 IF: 3.874)

  5. L.-C. Chen; C.-C. Chen; Sheng Hsiung Chang*; K.-L. Lee; Z.-L. Tseng; S.-H. Chen; H.-C. Kuo, “Formation and characterization of preferred oriented perovskite thin films on single-crystalline substrates”, 2018, Materials Research Express, vol. 5, p. 066403-066403. (2020 IF: 1.620)


2017

  1. Sheng Hsiung Chang*; C.-C. Chen; L.-C. Chen; C.-L. Tien; H.-M. Cheng; W.-C. Huang; H.-Y. Lin; S.-H. Chen; C.-G. Wu, “Unraveling the multifunctional capabilities of PCBM thin films in inverted-type CH3NH3PbI3 based photovoltaics”, 2017, Solar Energy Materials and Solar Cells, vol. 169, p. 40-46. (2018 IF: 6.019)

  2. K.-M. Lee; C.-C. Chen; L.-C. Chen; Sheng Hsiung Chang*; K.-S. Chen; S.-C. Yeh; C.-T. Chen; C.-G. Wu , “Thickness effects of the thermally evaporated C60 thin films on regular-type CH3NH3PbI3 based solar cells”, 2017, Solar Energy Materials and Solar Cells, vol. 164, p. 13-18. (2018 IF: 6.019)

  3. Sheng Hsiung Chang*; W.-N. Chen; C.-C. Chen; S.-C. Yeh; H.-M. Cheng; Z.-L. Tseng; L.-C. Chen; K. Y. Chiu; W.-T. Wu; C.-T. Chen; S.-H. Chen; C.-G. Wu, “Manipulating the molecular structure of PEDOT chains through controlling the viscosity of PEDOT:PSS solution to improve the photovoltaic performance of CH3NH3PbI3 solar cells”, 2017, Solar Energy Materials & Solar Cells, vol. 161, p. 7-13. (2018 IF: 6.019)

  4. C.-C. Chen; Sheng Hsiung Chang*; L.-C. Chen; C.-L. Tsai; H.-M. Cheng; W.-C. Huang; W.-N. Chen; Y.-C. Lu; Z.-L. Tseng; K. Y. Chiu; S.-H. Chen; C.-G. W , “Interplay between nucleation and crystal growth during the formation of CH3NH3PbI3 thin films and their application in solar cells", 2017, Solar Energy Materials & Solar Cells, vol. 159, p. 583-589. (2018 IF: 6.019)


2016

  1. C.-C. Chen; Sheng Hsiung Chang*; L.-C. Chen; H.-M. Cheng; Z.-L. Tseng; C.-G. Wu, “Manipulating multicrystalline grain size in CH3NH3PbI3 thin films for application in photovoltaics”, 2016, Solar Energy, vol. 139, p. 518-523. (2018 IF: 4.674)

  2. C.-C. Chen; Sheng Hsiung Chang*; L.-C. Chen; H.-M. Cheng; W.-T. Wu; C. L Chuang; Z.-L. Tseng; C.-G. Wu, “Improving the efficiency of inverted mixed-organic-cation perovskite absorber based photovoltaics by tailing the surface roughness of PEDOT:PSS thin film”, 2016, Solar Energy, vol. 135, p. 445-451. (2018 IF: 4.674)

  3. Sheng Hsiung Chang*; K.-F. Lin; H.-M. Cheng; C.-C. Chen; W.-T. Wu; S.-H. Chen; C.-G. Wu, “Influence of organic cations on high-performance CH3NH3PbI3 based photovoltaics”, 2016, Solar Energy Materials & Solar Cells, vol. 145 , p. 375-381. (2018 IF: 6.019)

  4. C.-G. Wu*; C.-H. Chiang; Sheng Hsiung Chang, “A perovskite cell with a record-high Voc of 1.61V based on solvent annealed CH3NH3PbBr3/ICBA active layer”, 2016, Nanoscale, vol. 8, p. 4077-4085. (2018 IF: 6.970)


2015

  1. Sheng Hsiung Chang*; K.-F. Lin; K. Y. Chiu; C.-L. Tsai; H.-M. Cheng; W.-N. Chen; S.-H. Chen; C.-G. Wu, “Improving the efficiency of CH3NH3PbI3 based photovoltaics by tuning the work function of PEDOT:PSS hole transport layer”, 2015, Solar Energy, vol. 122, p. 892-899. (2018 IF: 4.674)

  2. K.-M. Lee; Sheng Hsiung Chang*; K.-H. Wang; C.-M. Chang; H.-M. Cheng; C.-C. Kei; Z.-L. Tseng; C.-G. Wu, “Thickness effects of ZnO thin film for tri-iodide perovskite absorber based photovoltaics”, 2015, Solar Energy, vol. 120, p. 117-122. (2018 IF: 4.674)

  3. K.-F. Lin; Sheng Hsiung Chang*; K.-H. Wang; H.-M. Cheng; K.-M. Lee; S.-H. Chen; C.-G. Wu, “Unraveling the high performance of tri-iodide perovskite absorber based photovoltaics with a non-polar solvent washing treatment”, 2015, Solar Energy Materials & Solar Cells, vol. 141, p. 309-314. (2018 IF: 6.019)

  4. K.-M. Lee; Sheng Hsiung Chang*; M.-C. Wu; C.-G. Wu, “Raman and photoluminescence investigation of CdS/CdSe quantum dots on TiO2 nanoparticles with multi-walled carbon nanotubes and their application in solar cells”, 2015, Vibrational Spectroscopy, vol. 80, p. 66-69. (2018 IF: 1.861)

  5. Sheng Hsiung Chang*; C.-H. Chiang; Z.-L. Tseng; K. Y. Chiu; C.-Y. Tai; and C.-G. Wu, “Unraveling simultaneously enhanced open-circuit voltage and short-circuit current density in P3HT:ICBA:2,3-pyridinediol blended film based photovoltaics”, 2015, Journal of Physics D: Applied Physics, vol. 28, p. 195104-195104. (2018 IF: 2.829)

  6. N. Zhou; K. Prabakaran; B. Lee; Sheng Hsiung Chang; B. Harutyunyan; P. Guo; M. R. Bulter; A. Timalsina; M. J. Bedzyk; M. A. Rathner; S. Vegiraju; S. L. Yau; C.-G. Wu; R. P. H. Chang; A. Facchetti; M.-C. Chen; J. M. Tobin* , “Tetrathienoacenes (TTAs) metal-free sensitizers for high-performance dye-sensitized solar cells” , 2015 , Journal of the American Chemical Society , vol.137 , p.4414-4423. (2018 IF: 14.695)


2014

  1. Sheng Hsiung Chang*; H.-M. Cheng; C.-L. Tien; S.-C. Lin; K.-P. Chuang, “Optical, electrical and mechanical properties of Ga-doped ZnO thin films under different sputtering powers”, 2014, Optical Materials, vol. 38, p. 87-91. (2018 IF: 2.687)

  2. Sheng Hsiung Chang*; R.-Y. Liu; C.-E. Lin; C.-Y. Tai; C.-C. Chen, “1550-nm fluorescence efficiency and heat generation of erbium-doped fiber pumped by pulsed and quasi-continuous-wave lasers”, 2014, Aerospace Science and Technology, vol. 39, p .817-819. (2018 IF: 2.829)

  3. Sheng Hsiung Chang*; K.-F. Lin; C.-H. Chiang; S.-H. Chen; C.-G. Wu, “Plasmonic structure enhanced exciton generation at the interface between the perovskite absorber and copper nanoparticles”, 2014 , The Scientific World Journal, vol. 2014, p. 128414-128414. (Cited times: 8) 

  4. Sheng Hsiung Chang*; C.-H. Chiang; F.-S. Kao; C.-L. Tien; C.-G. Wu, “Unraveling the enhanced electrical conductivity of PEDOT:PSS thin films for ITO-free organic photovoltaics”, 2014, IEEE Photonics Journal, vol. 6, p. 8400307-8400307. (2018 IF: 2.729)


2013

  1. Sheng Hsiung Chang*; R.-Y. Liu; C.-E. Lin; F.-I. Chou; C.-Y. Tai; C.-C. Chen, “Photo-annealing effect of gamma-irradiated erbium doped fiber by femtoscond pulsed laser”, 2013 , Journal of Physics D: Applied Physics, vol. 46, p. 495113-495113. (2018 IF: 2.829)

  2. Sheng Hsiung Chang*; C.-H. Chiang; H.-M. Cheng; C.-Y. Tai; C.-G. Wu, “Broadband charge transfer dynamics in P3HT:PCBM blended film”, 2013, Optics Letters, vol. 38, p. 5342-5345. (2018 IF: 3.866)

  3. Sheng Hsiung Chang*, “Modeling and design of Ag, Au, and Cu nanoplasmonic structures for enhancing the absorption of P3HT:PCBM based photovoltaics”, 2013, IEEE Photonics Journal, vol. 5, p. 4800509-4800509. (2018 IF: 2.729)


2007-2012

  1. Sheng Hisung Chang*; C.-Y. Tai, “Broadband energy conversion between off-plane Gaussian lightwave and in-plane surface plasmon waves”, 2011, IEEE Photonics Technology Letters, vol. 23, p.1727-1729. (2018 IF: 2.553) 

  2. Sheng Hsiung Chang; B.-Y. Lin; T.-Y. Cheng; J.-K. Wang*, “Unraveling electromagnetic resonance of two-dimensional ordered nanoparticle arrays with a dipole-coupling model”, 2010, Physica status solidi (RRL)-Rapid Research Letters, vol. 4, p. 259-261. (2018 IF: 3.721)

  3. C.-Y. Tai*; Sheng Hsiung Chang; T. Chiu, “Significant enhancement of broadband optical limiting behavior using off-resonant sub-wavelength coupled plasmonic waves”, 2008 , Optics Express, vol. 16, p. 14979-14986. (2018 IF: 3.561)

  4. C.-Y. Tai*; Sheng Hsiung Chang; T. Chiu, “Numerical optimization of wide-angle and broadband operational polarization beam splitter based on anisotropically coupled plasmonic waveguides array”, 2008, J. Opt. Soc. Am. B, vol. 25, p. 1387-1392. (2018 IF: 2.284)

  5. C.-Y. Tai*; Sheng Hsiung Chang; T. Chiu, “Design and analysis of an ultra-compact and ultra-wideband polarization beam splitter based on coupled plasmonic waveguide arrays”, 2007, IEEE Photonics Technology Letters, vol. 19, p. 1448-1450. (2018 IF: 2.553) 

  6. Sheng Hsiung Chang; T. Chiu; C.-Y. Tai*, “Propagation characteristics of the supermode based on two coupled semi-infinite rib plasmonic waveguides”, 2007, Optics Express, vol. 15, p. 1755-1761. (2018 IF: 3.561)

Graduate Students's Theses

2016 Influence of the solvent additives on the photovoltaic peroformance of organometal lead perovskite based solar cells

2017 Investigations of C60 derivatives deposited on perovskite thin films and photovoltaic performance of the corresponding solar cells 

2018 Influence of the dropping time of antisolvent on the formation of perovskite thin films and their application in photovoltaic cells 

2019 Investigations of Inverted-type Double Perovskite MAxCs1-xPb(IxBr1-x)3 Thin Film Solar Cells 

2020 Manipulation of Nucleation and Crystal Growth in Perovskite Thin Film and their Application in Photovoltaic Cells

2020 Investigation of Ag/BCP: ZnO NPs films applied to the bifacial inverted perovskite thin film solar cells 

2021 High-stability and efficiency graded perovskite alloy thin-film based solar cells 

2021 Investigations of inverted-type MAPbI3 solar cells with the different molecular packing structures in the PCBM thin film 

2021 Investigations of High-Efficiency Perovskite Solar Cells Based on a Tin-Rich ITO Anode 

2022 Understanding the Defect Physics and Crystal Growth Mechanisms in Perovskite Photovoltaic Cells using Small Organic Molecules as Additives (PhD)

2022 Influences of the layer number of P3CT-Na polymers on inverted perovskite solar cells

2023 A way to control the nucleation and crystal growth of solution-deposited MAPbI3 thin films by manipulating P3CT Hole Transport Layer and its application in Solar cells (PhD)

2023 A study of highly efficient MAPbI3 solar cells:Improved carrier collection efficiency and water resistance of ETL via saturated BCP/IPA solution treatment

2023 Manipulating the dielectric responses of TiO2:MAPbI3 composites via sunlight 

2023 PCBM-molecule surface passivators induce iodide migration in the FAPbI3 crystal thin films and the application of solar cells

2024 Realization and understanding of high performance inverted perovskite solar cells via modifying the electron-transport and hole-transport layers (PhD)

No. 300, Zhongda Rd., Zhongli District, Taoyuan City 320317, Taiwan (R.O.C.) 

320317 桃園市中壢區中大路300號 

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