Daria KurandinaBanruo HuangWentao XuNikita HanikelAndrea DarùGautam D. StroscioKaiyu WangLaura GagliardiF. Dean TosteOmar M. Yaghi
Abstract Herein, we report the synthesis of a nitrone‐linked covalent organic framework, COF‐115, by combining N , N′ , N′ , N ′′′‐(ethene‐1, 1, 2, 2‐tetrayltetrakis(benzene‐4, 1‐diyl))tetrakis(hydroxylamine) and terephthaladehyde via a polycondensation reaction. The formation of the nitrone functionality was confirmed by solid‐state 13 C multi cross‐polarization magic angle spinning NMR spectroscopy of the 13 C‐isotope‐labeled COF‐115 and Fourier‐transform infrared spectroscopy. The permanent porosity of COF‐115 was evaluated through low‐pressure N 2 , CO 2 , and H 2 sorption experiments. Water vapor and carbon dioxide sorption analysis of COF‐115 and the isoreticular imine‐linked COF indicated a superior potential of N ‐oxide‐based porous materials for atmospheric water harvesting and CO 2 capture applications. Density functional theory calculations provided valuable insights into the difference between the adsorption properties of these COFs. Lastly, photoinduced rearrangement of COF‐115 to the associated amide‐linked material was successfully demonstrated.
Daria KurandinaBanruo HuangWentao XuNikita HanikelAndrea DarùGautam D. StroscioKaiyu WangLaura GagliardiF. Dean TosteOmar M. Yaghi
Fernando J. Uribe-Romo (1705432)Joseph R. Hunt (2381809)Hiroyasu Furukawa (1288971)Cornelius Klöck (1343214)Michael O’Keeffe (1414261)Omar M. Yaghi (1288965)
Fernando J. Uribe‐RomoJoseph R. HuntHiroyasu FurukawaCornelius KlöckM. O’KeeffeOmar M. Yaghi
Hao LyuChristian S. DiercksChenhui ZhuOmar M. Yaghi
Xinyu MuShuailei XieXingyao YeShanshan TaoJuan LiDonglin Jiang