Journal of the American Chemical Society · 2024 · 45 citations · 54 references
Covalent organic frameworks (COFs) have potential applications in a wide range of fields. However, it remains a critical challenge to constrain their covalent expansions in the one-dimensional (1D) direction. Here, we developed a general approach to fabricate 15 different highly crystalline COFs with zigzag-packed 1D porous organic chains through the condensation of V-shaped ditopic linkers and X-shaped tetratopic knots. Appropriate geometrical combinations of a wide scope of linkers and knots with distinct aromatic cores, linkages, and functionalities offer a series of quasi-1D COFs with dominant pore sizes of 7-13 Å and surface areas of 116-784 m<sup>2</sup> g<sup>-1</sup>. Among them, nitrogen (N)-doped 1D COFs with site-specific doping of heteroatoms favor a tunable control of band structures and conjugations and thus allow a remarkable hydrogen evolution rate up to 80 mmol g<sup>-1</sup> h<sup>-1</sup> in photocatalytic water splitting. This general strategy toward programming function in porous crystalline materials has the potential to tune the topologically well-defined electronic properties through precisely periodic doping.
54
Song Lin, Christian S. Diercks, Yue‐Biao Zhang et al. · Science · 2015 · 2.5K citations · Full text
Photocatalytic solar hydrogen production from water on a 100-m2 scale
Hiroshi Nishiyama, Taro Yamada, Mamiko Nakabayashi et al. · Nature · 2021 · 1.6K citations
Hydrogen Energy Technology, Chemical Engineering, 100-M2 Scale +11