TY - JOUR
T1 - Metal-Free Thiophene-Sulfur Covalent Organic Frameworks
T2 - Precise and Controllable Synthesis of Catalytic Active Sites for Oxygen Reduction
AU - Li, Daohao
AU - Li, Cuiyan
AU - Zhang, Lijie
AU - Li, Hui
AU - Zhu, Liangkui
AU - Yang, Dongjiang
AU - Fang, Qianrong
AU - Qiu, Shilun
AU - Yao, Xiangdong
N1 - Publisher Copyright:
© 2020 American Chemical Society.
PY - 2020/5/6
Y1 - 2020/5/6
N2 - Defective or heteroatom-doped metal-free carbon materials (MFCMs) have been regarded as efficient oxygen reduction reaction (ORR) catalysts in the past decade. However, the active centers for ORR in MFCMs are hard to confirm precisely and synthesize controllably through common methods such as high-temperature pyrolysis or heteroatom doping. To verify the precise structure acting as the active center for the ORR, we first report two crystalline metal-free thiophene-sulfur covalent organic frameworks (MFTS-COFs) as ORR catalysts. The MFTS-COFs show more positive catalytic capability than the thiophene-free COF, indicating that pentacyclic thiophene-sulfur building blocks act as active centers to induce ORR catalytic activity. MFTS-COFs with higher contents of thiophene-sulfur exhibit better ORR performance. The experimental identification is supported by density functional theory calculations. These results thus demonstrate that rational design and precise synthesis of metal-free crystalline organic materials can promote the development of new ORR catalysts.
AB - Defective or heteroatom-doped metal-free carbon materials (MFCMs) have been regarded as efficient oxygen reduction reaction (ORR) catalysts in the past decade. However, the active centers for ORR in MFCMs are hard to confirm precisely and synthesize controllably through common methods such as high-temperature pyrolysis or heteroatom doping. To verify the precise structure acting as the active center for the ORR, we first report two crystalline metal-free thiophene-sulfur covalent organic frameworks (MFTS-COFs) as ORR catalysts. The MFTS-COFs show more positive catalytic capability than the thiophene-free COF, indicating that pentacyclic thiophene-sulfur building blocks act as active centers to induce ORR catalytic activity. MFTS-COFs with higher contents of thiophene-sulfur exhibit better ORR performance. The experimental identification is supported by density functional theory calculations. These results thus demonstrate that rational design and precise synthesis of metal-free crystalline organic materials can promote the development of new ORR catalysts.
UR - https://www.scopus.com/pages/publications/85085112055
U2 - 10.1021/jacs.0c02225
DO - 10.1021/jacs.0c02225
M3 - 文章
AN - SCOPUS:85085112055
SN - 0002-7863
VL - 142
SP - 8104
EP - 8108
JO - Journal of the American Chemical Society
JF - Journal of the American Chemical Society
IS - 18
ER -