Search references:
1. | Stankevych, Andrei; Saxena, Rishabh; Grüne, Jeannine; Lulei, Sebastian; Sperlich, Andreas; Athanasopoulos, Stavros; Vakhnin, Alexander; Sahay, Prakhar; Brütting, Wolfgang; Dyakonov, Vladimir; Bässler, Heinz; Köhler, Anna; Kadashchuk, Andrey: Charge-carrier photogeneration in single-component organic carbazole-based semiconductors via low-excitation-power triplet-triplet annihilation. In: Phys. Rev. Applied, 2023. (Type: Journal Article | BibTeX) @article{Stankevych2023, title = {Charge-carrier photogeneration in single-component organic carbazole-based semiconductors via low-excitation-power triplet-triplet annihilation}, author = {Andrei Stankevych and Rishabh Saxena and Jeannine Grüne and Sebastian Lulei and Andreas Sperlich and Stavros Athanasopoulos and Alexander Vakhnin and Prakhar Sahay and Wolfgang Brütting and Vladimir Dyakonov and Heinz Bässler and Anna Köhler and Andrey Kadashchuk}, year = {2023}, date = {2023-11-16}, journal = {Phys. Rev. Applied}, keywords = {}, pubstate = {published}, tppubtype = {article} } |
2. | Wu, Jianchang; Zhang, Jiyuan; Hu, Manman; Reiser, Patrick; Torresi, Luca; Friederich, Pascal; Lahn, Leopold; Kasian, Olga; Guldi, Dirk M; Péres-Ojeda, Eugenia M; Barabash, Anastasia; Rocha-Ortiz, Juan S; Zhao, Yicheng; Xie, Zhiqiang; Luo, Junsheng; Wang, Yunuo; Seok, Sang II; Hauch, Jens A; Brabec, Christoph J: Integrated System Built for Small-Molecule Semiconductors via High-Throughput Approaches. In: J. Am. Chem. Soc., 2023. (Type: Journal Article | Links | BibTeX) @article{Wu2023, title = {Integrated System Built for Small-Molecule Semiconductors via High-Throughput Approaches}, author = {Jianchang Wu and Jiyuan Zhang and Manman Hu and Patrick Reiser and Luca Torresi and Pascal Friederich and Leopold Lahn and Olga Kasian and Dirk M Guldi and M. Eugenia Péres-Ojeda and Anastasia Barabash and Juan S. Rocha-Ortiz and Yicheng Zhao and Zhiqiang Xie and Junsheng Luo and Yunuo Wang and Sang II Seok and Jens A Hauch and Christoph J Brabec}, doi = {10.1021/jacs.3c03271}, year = {2023}, date = {2023-07-19}, journal = {J. Am. Chem. Soc.}, keywords = {}, pubstate = {published}, tppubtype = {article} } |
3. | Bai, Bing; Zhang, Chengxi; Dou, Yongjiang; Kong, Lingmei; Wang, Lin; Wang, Sheng; Li, Jun; Zhou, Yi; Liu, Long; Liu, Baiquan; Zhang, Xiaoyu; Hadar, Ido; Bekenstein, Yehonadav; Wang, Aixiang; Yin, Zongyou; Turyanska, Lyudmila; Feldmann, Jochen; Yang, Xuyong; Jia, Guohua: Atomically flat semiconductor nanoplatelets for light-emitting applications . In: Chemical Society Reviews, 52 , pp. 318 - 360, 2022. (Type: Journal Article | Links | BibTeX) @article{Bai2022, title = {Atomically flat semiconductor nanoplatelets for light-emitting applications }, author = {Bing Bai and Chengxi Zhang and Yongjiang Dou and Lingmei Kong and Lin Wang and Sheng Wang and Jun Li and Yi Zhou and Long Liu and Baiquan Liu and Xiaoyu Zhang and Ido Hadar and Yehonadav Bekenstein and Aixiang Wang and Zongyou Yin and Lyudmila Turyanska and Jochen Feldmann and Xuyong Yang and Guohua Jia}, doi = {10.1039/D2CS00130F}, year = {2022}, date = {2022-12-19}, journal = {Chemical Society Reviews}, volume = {52}, pages = {318 - 360}, keywords = {}, pubstate = {published}, tppubtype = {article} } |
4. | Restle, Tassilo M F; Dums, Jasmin V; Raudaschl-Sieber, Gabriele; Fässler, Thomas F: Synthesis, Structure, Solid-State NMR Spectroscopy, and Electronic Structures of the Phosphidotrielates Li3AlP2 and Li3GaP2. In: Chemistry – A European Journal, 26 (30), pp. 6812-6819, 2020. (Type: Journal Article | Abstract | Links | BibTeX) @article{Restle2020, title = {Synthesis, Structure, Solid-State NMR Spectroscopy, and Electronic Structures of the Phosphidotrielates Li3AlP2 and Li3GaP2}, author = {Tassilo M F Restle and Jasmin V Dums and Gabriele Raudaschl-Sieber and Thomas F Fässler}, url = {https://chemistry-europe.onlinelibrary.wiley.com/doi/abs/10.1002/chem.202000482}, doi = {https://doi.org/10.1002/chem.202000482}, year = {2020}, date = {2020-01-01}, journal = {Chemistry – A European Journal}, volume = {26}, number = {30}, pages = {6812-6819}, abstract = {Abstract The lithium phosphidoaluminate Li9AlP4 represents a promising new compound with a high lithium ion mobility. This triggered the search for new members in the family of lithium phosphidotrielates, and the novel compounds Li3AlP2 and Li3GaP2, obtained directly from the elements via ball milling and subsequent annealing, are reported here. It was unexpectedly found through band structure calculations that Li3AlP2 and Li3GaP2 are direct band gap semiconductors with band gaps of 3.1 and 2.8 eV, respectively. Rietveld analyses reveal that both compounds crystallize isotypically in the orthorhombic space group Cmce (no. 64) with lattice parameters of a=11.5138(2)}, keywords = {}, pubstate = {published}, tppubtype = {article} } Abstract The lithium phosphidoaluminate Li9AlP4 represents a promising new compound with a high lithium ion mobility. This triggered the search for new members in the family of lithium phosphidotrielates, and the novel compounds Li3AlP2 and Li3GaP2, obtained directly from the elements via ball milling and subsequent annealing, are reported here. It was unexpectedly found through band structure calculations that Li3AlP2 and Li3GaP2 are direct band gap semiconductors with band gaps of 3.1 and 2.8 eV, respectively. Rietveld analyses reveal that both compounds crystallize isotypically in the orthorhombic space group Cmce (no. 64) with lattice parameters of a=11.5138(2) |
References (last update: Sept. 23, 2024):
2023 |
Stankevych, Andrei; Saxena, Rishabh; Grüne, Jeannine; Lulei, Sebastian; Sperlich, Andreas; Athanasopoulos, Stavros; Vakhnin, Alexander; Sahay, Prakhar; Brütting, Wolfgang; Dyakonov, Vladimir; Bässler, Heinz; Köhler, Anna; Kadashchuk, Andrey Charge-carrier photogeneration in single-component organic carbazole-based semiconductors via low-excitation-power triplet-triplet annihilation Journal Article Phys. Rev. Applied, 2023. BibTeX | Tags: annihilation, carbazole-based, low-excitation-power, photogeneration, semiconductors, triplet @article{Stankevych2023, title = {Charge-carrier photogeneration in single-component organic carbazole-based semiconductors via low-excitation-power triplet-triplet annihilation}, author = {Andrei Stankevych and Rishabh Saxena and Jeannine Grüne and Sebastian Lulei and Andreas Sperlich and Stavros Athanasopoulos and Alexander Vakhnin and Prakhar Sahay and Wolfgang Brütting and Vladimir Dyakonov and Heinz Bässler and Anna Köhler and Andrey Kadashchuk}, year = {2023}, date = {2023-11-16}, journal = {Phys. Rev. Applied}, keywords = {annihilation, carbazole-based, low-excitation-power, photogeneration, semiconductors, triplet}, pubstate = {published}, tppubtype = {article} } |
Wu, Jianchang; Zhang, Jiyuan; Hu, Manman; Reiser, Patrick; Torresi, Luca; Friederich, Pascal; Lahn, Leopold; Kasian, Olga; Guldi, Dirk M; Péres-Ojeda, Eugenia M; Barabash, Anastasia; Rocha-Ortiz, Juan S; Zhao, Yicheng; Xie, Zhiqiang; Luo, Junsheng; Wang, Yunuo; Seok, Sang II; Hauch, Jens A; Brabec, Christoph J Integrated System Built for Small-Molecule Semiconductors via High-Throughput Approaches Journal Article J. Am. Chem. Soc., 2023. Links | BibTeX | Tags: semiconductors @article{Wu2023, title = {Integrated System Built for Small-Molecule Semiconductors via High-Throughput Approaches}, author = {Jianchang Wu and Jiyuan Zhang and Manman Hu and Patrick Reiser and Luca Torresi and Pascal Friederich and Leopold Lahn and Olga Kasian and Dirk M Guldi and M. Eugenia Péres-Ojeda and Anastasia Barabash and Juan S. Rocha-Ortiz and Yicheng Zhao and Zhiqiang Xie and Junsheng Luo and Yunuo Wang and Sang II Seok and Jens A Hauch and Christoph J Brabec}, doi = {10.1021/jacs.3c03271}, year = {2023}, date = {2023-07-19}, journal = {J. Am. Chem. Soc.}, keywords = {semiconductors}, pubstate = {published}, tppubtype = {article} } |
2022 |
Bai, Bing; Zhang, Chengxi; Dou, Yongjiang; Kong, Lingmei; Wang, Lin; Wang, Sheng; Li, Jun; Zhou, Yi; Liu, Long; Liu, Baiquan; Zhang, Xiaoyu; Hadar, Ido; Bekenstein, Yehonadav; Wang, Aixiang; Yin, Zongyou; Turyanska, Lyudmila; Feldmann, Jochen; Yang, Xuyong; Jia, Guohua Atomically flat semiconductor nanoplatelets for light-emitting applications Journal Article Chemical Society Reviews, 52 , pp. 318 - 360, 2022. Links | BibTeX | Tags: semiconductors @article{Bai2022, title = {Atomically flat semiconductor nanoplatelets for light-emitting applications }, author = {Bing Bai and Chengxi Zhang and Yongjiang Dou and Lingmei Kong and Lin Wang and Sheng Wang and Jun Li and Yi Zhou and Long Liu and Baiquan Liu and Xiaoyu Zhang and Ido Hadar and Yehonadav Bekenstein and Aixiang Wang and Zongyou Yin and Lyudmila Turyanska and Jochen Feldmann and Xuyong Yang and Guohua Jia}, doi = {10.1039/D2CS00130F}, year = {2022}, date = {2022-12-19}, journal = {Chemical Society Reviews}, volume = {52}, pages = {318 - 360}, keywords = {semiconductors}, pubstate = {published}, tppubtype = {article} } |
2020 |
Restle, Tassilo M F; Dums, Jasmin V; Raudaschl-Sieber, Gabriele; Fässler, Thomas F Synthesis, Structure, Solid-State NMR Spectroscopy, and Electronic Structures of the Phosphidotrielates Li3AlP2 and Li3GaP2 Journal Article Chemistry – A European Journal, 26 (30), pp. 6812-6819, 2020. Abstract | Links | BibTeX | Tags: aluminum, gallium, NMR spectroscopy, phosphorous, semiconductors @article{Restle2020, title = {Synthesis, Structure, Solid-State NMR Spectroscopy, and Electronic Structures of the Phosphidotrielates Li3AlP2 and Li3GaP2}, author = {Tassilo M F Restle and Jasmin V Dums and Gabriele Raudaschl-Sieber and Thomas F Fässler}, url = {https://chemistry-europe.onlinelibrary.wiley.com/doi/abs/10.1002/chem.202000482}, doi = {https://doi.org/10.1002/chem.202000482}, year = {2020}, date = {2020-01-01}, journal = {Chemistry – A European Journal}, volume = {26}, number = {30}, pages = {6812-6819}, abstract = {Abstract The lithium phosphidoaluminate Li9AlP4 represents a promising new compound with a high lithium ion mobility. This triggered the search for new members in the family of lithium phosphidotrielates, and the novel compounds Li3AlP2 and Li3GaP2, obtained directly from the elements via ball milling and subsequent annealing, are reported here. It was unexpectedly found through band structure calculations that Li3AlP2 and Li3GaP2 are direct band gap semiconductors with band gaps of 3.1 and 2.8 eV, respectively. Rietveld analyses reveal that both compounds crystallize isotypically in the orthorhombic space group Cmce (no. 64) with lattice parameters of a=11.5138(2)}, keywords = {aluminum, gallium, NMR spectroscopy, phosphorous, semiconductors}, pubstate = {published}, tppubtype = {article} } Abstract The lithium phosphidoaluminate Li9AlP4 represents a promising new compound with a high lithium ion mobility. This triggered the search for new members in the family of lithium phosphidotrielates, and the novel compounds Li3AlP2 and Li3GaP2, obtained directly from the elements via ball milling and subsequent annealing, are reported here. It was unexpectedly found through band structure calculations that Li3AlP2 and Li3GaP2 are direct band gap semiconductors with band gaps of 3.1 and 2.8 eV, respectively. Rietveld analyses reveal that both compounds crystallize isotypically in the orthorhombic space group Cmce (no. 64) with lattice parameters of a=11.5138(2) |