基本情報
- 所属
- 学習院大学 理学部 化学科 助教
- 研究者番号
- 00911314
- ORCID ID
https://orcid.org/0000-0002-0874-4798- J-GLOBAL ID
- 202401003459205475
- researchmap会員ID
- R000070164
- 外部リンク
受賞
3論文
29-
ChemPhotoChem 10(9) 2026年9月8日Organic single‐crystal lasers require materials that unite strong solid‐state luminescence, controlled crystallization, and well‐defined optical resonator structures. However, π–π stacking, polymorphism, and aggregation‐induced quenching frequently impede the reliable molecular design of such systems. Here, we report β‐dicyanostilbene (βDCS)‐based luminogens engineered to address these challenges through the introduction of tert ‐butyl groups and fluorine substituents, which synergistically enhance solubility, suppress π–π interactions, and generate a twisted molecular geometry. Solution‐phase crystallization at room temperature yielded two distinct polymorphs, each possessing markedly different packing arrangements yet similarly high luminescence efficiencies. Both polymorphs exhibited monomer‐like emission in the solid state and demonstrated clear laser oscillation. Structural analysis and Hirshfeld surface mapping confirmed the absence of π–π stacking in either crystal, while time‐dependent density functional theory (TD‐DFT) calculations indicated that the emission originates primarily from π–π* transitions along the molecular long axis. Notably, the ability of both polymorphs to lase—despite their distinct crystal architectures—challenges the conventional assumption that polymorphism degrades laser performance. These findings establish bulky‐substituent introduction and controlled molecular twisting as effective design strategies for achieving polymorph control, preserving luminescence properties, and enabling laser oscillation in βDCS‐based single‐crystal materials.
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ChemPhotoChem 10(6) 2026年6月25日π‐Conjugated molecules with highly π‐extended structures are important for optoelectronic applications. Naphthobischalcogendiazole backbones are recently developed electron‐accepting π‐extended structures. Herein, we report the discovery of a whitish luminescence based on the appearance of multiple PL bands for boronate pinacol ester (Bpin)‐appended naphtho[1,2‐c:5,6‐c′]bis[1,2,5]oxadiazole ( NOz ) crystal. The appearance of these multiple PL bands was interpreted by the close packing of PB2‐NOz , which was likely assisted by intermolecular short contacts involving the Bpin units. This discovery suggests that the strong intermolecular interaction by Bpin can be exploited for the crystal engineering toward versatile optoelectronic functions, rather than being used solely as conventional building blocks in coupling reactions.
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Materials Advances 7(3) 1531-1536 2026年Single-crystals composed of organic π-conjugated molecules with high solid-state luminescence are promising candidates for laser media.
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Nature Communications 16(1) 2025年11月26日
MISC
1-
レーザー学会研究会報告 = Reports the on topical meeting of the Laser Society of Japan RTM23(27-33) 23-26 2023年9月30日
講演・口頭発表等
33-
レーザー学会第601回研究会「フォトニクス・ワークショップ in 九州 ~宮崎~」 レーザー学会第602回研究会「有機コヒーレントフォトニクス」合同開催 2025年10月12日
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2025 International Conference on Solid State Devices and Materials 2025年9月17日
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The 11th International Conference on Molecular Electronics & Bioelectronics (M&BE11) 2024年6月21日
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13th International Conference on Organic Nonlinear Optics 2022 International Conference on Organic Photonics and Electronics 2022年11月10日
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2022 International Conference on Solid State Devices and Materials 2022年9月29日
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International Conference on Solid State Devices and Materials 2021年9月
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10th International Conference on Molecular Electronics and Bioelectronics (M&BE10) 2019年6月
所属学協会
6-
- 現在
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共同研究・競争的資金等の研究課題
5-
日本学術振興会 科学研究費助成事業 2026年4月 - 2029年3月
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公益財団法人マツダ財団 2025年12月 - 2028年3月
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高橋産業経済研究財団 研究助成 2025年4月 - 2027年3月
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日本学術振興会 科学研究費助成事業 2022年4月 - 2026年3月
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池谷科学技術振興財団 2024年4月 - 2025年3月