Enhanced Four‐Electron Oxygen Reduction Selectivity of Clamp‐Shaped Cobalt(II) Porphyrin(2.1.2.1) Complexes

Author:

Xue Songlin1ORCID,Ryan Osterloh W.2ORCID,Lv Xiaojuan1ORCID,Liu Ningchao1,Gao Yimei3,Lei Haitao3ORCID,Fang Yuanyuan2ORCID,Sun Zhongti1,Mei Peifeng4ORCID,Kuzuhara Daiki5ORCID,Aratani Naoki4ORCID,Yamada Hiroko4ORCID,Cao Rui3ORCID,Kadish Karl M.2ORCID,Qiu Fengxian1ORCID

Affiliation:

1. School of Chemistry and Chemical Engineering Jiangsu University 301 Xuefu Road Zhenjiang 212013 China

2. Department of Chemistry University of Houston Houston TX 77204-5003 USA

3. Key Laboratory of Applied Surface and Colloid Chemistry Ministry of Education School of Chemistry and Chemical Engineering Shaanxi Normal University Xi'an 710119 Shaanxi China

4. Division of Materials Science Nara Institute of Science and Technology 8916-5 Takayama-cho Nara 630-0192 Japan

5. Faculty of Science and Engineering Iwate University 4-3-5 Ueda Morioka 020-8551 Japan

Abstract

AbstractThe molecular structure, electrochemistry, spectroelectrochemistry and electrocatalytic oxygen reduction reaction (ORR) features of two CoII porphyrin(2.1.2.1) complexes bearing Ph or F5Ph groups at the two meso‐positions of the macrocycle are examined. Single crystal X‐ray analysis reveal a highly bent, nonplanar macrocyclic conformation of the complex resulting in clamp‐shaped molecular structures. Cyclic voltammetry paired with UV/Vis spectroelectrochemistry in PhCN/0.1 M TBAP suggest that the first electron addition corresponds to a macrocyclic‐centered reduction while spectral changes observed during the first oxidation are consistent with a metal‐centered CoII/CoIII process. The activity of the clamp‐shaped complexes towards heterogeneous ORR in 0.1 M KOH show selectivity towards the 4e ORR pathway giving H2O. DFT first‐principle calculations on the porphyrin catalyst indicates a lower overpotential for 4e ORR as compared to the 2e pathway, consistent with experimental data.

Funder

National Natural Science Foundation of China

Welch Foundation

Publisher

Wiley

Subject

General Medicine

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