結晶性sp2-炭素共役2Dポリマーの精密合成の進展 (Scientists Make Progress in Precise Synthesis of Crystalline sp2-Carbon Conjugated 2D Polymers)

ad

2025-03-17 中国科学院(CAS)

中国科学院の研究チームが、高性能な結晶性sp²-炭素共役2Dポリマー(sp²c-2DP)フィルムを合成する新たな界面合成戦略を開発した。従来のC=N結合を利用した手法ではC=C結合のsp²c-2DP構築が困難だったが、本研究では両親媒性ピリジニウム支援型アルドール型界面重縮合戦略を採用。水界面での自己組織化により、穏和な条件下で不可逆的なC=C結合形成を実現した。得られたフィルムは長距離分子配列を持ち、厚さの調整が可能。さらに、浸透発電デバイスで出力電力密度51.4 W/m²、陽イオン選択係数0.68という優れた性能を示し、膜技術や有機電子デバイスへの応用が期待される。

<関連情報>

温和な条件下での不可逆的化学反応による結晶性二次元共役ポリマーの合成 Synthesis of crystalline two-dimensional conjugated polymers through irreversible chemistry under mild conditions

Haoyong Yang,Junyi Han,Shengxu Li,Petko St. Petkov,Qunji Xue,Xinliang Feng & Tao Zhang
Nature Communications  Published:08 March 2025
DOI:https://doi.org/10.1038/s41467-025-57612-0

結晶性sp2-炭素共役2Dポリマーの精密合成の進展 (Scientists Make Progress in Precise Synthesis of Crystalline sp2-Carbon Conjugated 2D Polymers)

Abstract

Two-dimensional conjugated polymers (2DCPs) are a class of monolayer to multilayer crystalline polymeric materials with conjugated linkages at two-orthogonal directions that promise applications from membranes to electronics. Current interfacial synthesis methods have succeeded in constructing 2DCPs from dynamic covalent chemistry, e.g., imine linkages. However, these methods are unsuitable for fabricating the 2DCPs of robust olefin linkages due to the inadequate reversibility. Here we report the synthesis of 2DCPs linked by olefin bonds via amphiphilic-pyridinium-assisted aldol-type interfacial polycondensation. The synthesis is achieved by an alkyl-quaternized trimethylpyridine that can self-assemble into ordered monolayer at water interface and further react in situ with multifunctional aldehydes via aldol-type topologic polycondensation. The resultant 2DCPs show long-range molecular ordering, large lateral size and well-controlled thickness. Both experimental and theoretical analyses show that the pre-assembled trimethylpyridinium monolayer at water interface significantly boosts its condensation reactivity, thereby facilitating the synthesis of 2DCPs under mild conditions. The integration of the 2DCPs with inherent positive charges in an osmotic power generator gives excellent output power density reaching 51.4 W m−2, superior to the most reported 2D nanoporous membranes.

0502有機化学製品
ad
ad
Follow
ad
タイトルとURLをコピーしました