Related Experiment Video
Updated: Jan 22, 2026

A Simple, Low-cost, and Robust System to Measure the Volume of Hydrogen Evolved by Chemical Reactions with Aqueous Solutions
Published on: August 17, 2016
Aminophenyl-substituted cobalt(iii) corrole: a bifunctional electrocatalyst for the oxygen and hydrogen evolution
Amit Kumar1, Sujesh S1, Prachi Varshney1
1Department of Chemistry, Indian Institute of Science Education and Research Bhopal, Bhopal Bypass Road, Bhopal, M.P-462066, India. sankar@iiserb.ac.in.
Abstract:
Catalytic water splitting is a highly promising area of research for the development of a hydrogen-based society. Herein, the synthesis of the bifunctional A2B-type cobalt(iii) corrole Co(BAPC)Py2 having the electron-withdrawing meso-pentafluorophenyl and the basic meso-p-aminophenyl substituents is reported. Cyclic voltammetric studies reveal that Co(BAPC)Py2 has two oxidation waves at 0.97 V and 1.42 V associated with the Co(iii) → Co(iv) and Co(iv) → Co(v) redox couples, respectively, and two reduction waves at 0.45 and -0.21 V corresponding to the Co(iii) → Co(ii) and Co(ii) → Co(i) redox couples. The as-synthesized Co(BAPC)Py2 corrole has been demonstrated to be an efficient catalyst for the oxygen evolution reaction (OER) and the hydrogen evolution reaction (HER) in homogeneous (acetonitrile) as well as heterogeneous media. In a homogeneous solution, Co(BAPC)Py2 showed excellent activity towards both the HER, with the first-order rate constant (kcat) of 952.0 s-1, and the OER with the first-order rate constant of 0.2 s-1. The strong electron -withdrawing pentafluorophenyl group present on the corrole ring shifts the redox process towards the anodic direction and facilitates the HER performance, whereas the aminophenyl group increases the basicity of the catalyst that improves the OER activity.
Related Concept Videos
Nucleophilic Substitution Reactions
In 1896, the German chemist Paul Walden discovered that he could interconvert pure enantiomeric (+) and (-) malic acids through a series of reactions. This conversion suggested the involvement of optical inversion during the substitution reaction. Further, in 1930, Sir Christopher Ingold described for the first time two different forms of nucleophilic substitution reactions, which are known as SN1 (nucleophilic substitution unimolecular) and SN2 (nucleophilic substitution...
Preparation of Alcohols via Substitution Reactions
Alcohols can be synthesized from alkyl halides via nucleophilic substitution reactions. The highly polar carbon-halogen bond in the substrate makes halide a good leaving group. The hydroxide ion or water can act as a nucleophile to take the place of halide and form an alcohol. The substitution reactions occur via two different reaction pathways, SN1 or SN2, depending on the nature of carbon attached to the halide.
Primary alcohols are synthesized from primary alkyl halides, and the...
Half-life of a Reaction
Enthalpies of Reaction
Hydrogen Bonds
Hydrogen Bonds Control the World!
Because hydrogen has very weak electronegativity when it binds with a strongly electronegative atom, such as oxygen or nitrogen, electrons in the bond are unequally shared....
Oxygen Delivering System III: Tracheostomy and T-piece
Tracheostomy
A tracheostomy is a surgically created opening (stoma) in the anterior part of the trachea. It is used to establish a patient airway, bypass an upper airway obstruction, simplify the removal of secretions, permit long-term...

