Literatura científica selecionada sobre o tema "O-IDTBR"
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Artigos de revistas sobre o assunto "O-IDTBR"
Badgujar, Sachin, Chang Eun Song, Sora Oh, Won Suk Shin, Sang-Jin Moon, Jong-Cheol Lee, In Hwan Jung e Sang Kyu Lee. "Highly efficient and thermally stable fullerene-free organic solar cells based on a small molecule donor and acceptor". Journal of Materials Chemistry A 4, n.º 42 (2016): 16335–40. http://dx.doi.org/10.1039/c6ta06367e.
Texto completo da fonteHuang, Yulin, Wenfa Zhou, Xiaofang Li, Li Jiang e Yinglin Song. "Highly broadband NLO response of acceptor–donor–acceptor materials with a planar conformation". Materials Advances 2, n.º 6 (2021): 2097–103. http://dx.doi.org/10.1039/d0ma00918k.
Texto completo da fontePaterson, Alexandra F., Ruipeng Li, Anastasia Markina, Leonidas Tsetseris, Sky MacPhee, Hendrik Faber, Abdul-Hamid Emwas et al. "N-Doping improves charge transport and morphology in the organic non-fullerene acceptor O-IDTBR". Journal of Materials Chemistry C 9, n.º 13 (2021): 4486–95. http://dx.doi.org/10.1039/d0tc05861k.
Texto completo da fonteLiu, Jiangang, Shuyi Zeng, Peng Jing, Kui Zhao e Qiuju Liang. "Investigating the effect of cosolvents on P3HT/O-IDTBR film-forming kinetics and film morphology". Journal of Energy Chemistry 51 (dezembro de 2020): 333–41. http://dx.doi.org/10.1016/j.jechem.2020.04.048.
Texto completo da fonteLiang, Qiuju, Xuechen Jiao, Ye Yan, Zhiyuan Xie, Guanghao Lu, Jiangang Liu e Yanchun Han. "Separating Crystallization Process of P3HT and O‐IDTBR to Construct Highly Crystalline Interpenetrating Network with Optimized Vertical Phase Separation". Advanced Functional Materials 29, n.º 47 (20 de janeiro de 2019): 1807591. http://dx.doi.org/10.1002/adfm.201807591.
Texto completo da fonteArshad, Muhammad Nadeem, Muhammad Khalid, Mohammad Asad, Ataualpa A. C. Braga, Abdullah M. Asiri e Maha M. Alotaibi. "Influence of Peripheral Modification of Electron Acceptors in Nonfullerene (O-IDTBR1)-Based Derivatives on Nonlinear Optical Response: DFT/TDDFT Study". ACS Omega 7, n.º 14 (31 de março de 2022): 11631–42. http://dx.doi.org/10.1021/acsomega.1c06320.
Texto completo da fonteLiu, Yadi, Tao Zhang, Rui Zhang, Jian Guan, Jiaqi Pan, Xinhong Yu, Qiang Zhang e Yanchun Han. "Enhancing the Molecular Order and Vertical Component Distribution of the P3HT/O‐IDTBR System during Layer‐by‐Layer Processing". Macromolecular Rapid Communications, 21 de agosto de 2023. http://dx.doi.org/10.1002/marc.202300338.
Texto completo da fonteLiu, Yadi, Qiang Zhang, Jian Guan, Jingwei Xue, Xinhong Yu, Fan Wu, Wei Ma e Yanchun Han. "Improving the Molecular Packing Order and Vertical Phase Separation of the P3HT:O-IDTBR Blend by Extending the Crystallization Period of O-IDTBR". ACS Applied Materials & Interfaces, 26 de setembro de 2022. http://dx.doi.org/10.1021/acsami.2c12220.
Texto completo da fonteStojanovic, Ljiljana, Samuele Giannini e Jochen Blumberger. "Exciton Transport in the Nonfullerene Acceptor O-IDTBR from Nonadiabatic Molecular Dynamics". Journal of Chemical Theory and Computation, 5 de julho de 2024. http://dx.doi.org/10.1021/acs.jctc.4c00605.
Texto completo da fonteLópez-Vicente, R., M. Fernández-Castro, J. Abad, E. Mazzolini, J. W. Andreasen, M. Espindola-Rodriguez e A. Urbina. "Lifetime Study of Organic Solar Cells with O-IDTBR as Non-Fullerene Acceptor". Frontiers in Energy Research 9 (19 de outubro de 2021). http://dx.doi.org/10.3389/fenrg.2021.741288.
Texto completo da fonteTeses / dissertações sobre o assunto "O-IDTBR"
Diarra, Cheick Oumar. "Modélisation par dynamique moléculaire ab initio du transport des excitons et du transport thermique dans les semiconducteurs organiques pour la collecte d'énergie". Electronic Thesis or Diss., Strasbourg, 2024. http://www.theses.fr/2024STRAD013.
Texto completo da fonteThe exciton plays a central role in the functioning of organic solar cells (OSCs). Understanding its dynamics in organic semiconductors is essential, particularly to optimize the diffusion length, a key property for the performance of planar heterojunctions, which are considered as a potentially more stable alternative to bulk heterojunctions (BHJ) in certain contexts. In the first part of this thesis, we developed a robust and versatile methodological approach to evaluate the exciton diffusion length in organic semiconductors. This method, based on AIMD-ROKS, was successfully validated for the P3HT polymer. It was also applied to the NFA O-IDTBR acceptor, revealing promising diffusion lengths, though still insufficient for planar heterojunctions. The second part of the thesis explores heat transfer in organic semiconductors, a crucial element for the performance of thermoelectric devices. These studies focused on P3HT, a material used in thermoelectricity. First, the thermal conductivity within P3HT chains was studied, revealing the influence of polymer chain length. Then, heat transfers between these chains were also examined