Synergistic effects of covalently coupled eosin‐Y with Ben‐graphitic carbon nitride framework for improved photocatalytic activity in solar light‐driven Biginelli product generation and NADH regeneration

Author:

Prajapati Anurag1,Yadav Rajesh K.1ORCID,Shahin Rehana1,Shukla Ravindra1,Mishra Shaifali1,Singh Satyam1,Yadav Suman2,Baeg Jin‐OoK3,Singhal Rajat4,Gupta Navneet K.4,Ali Mohd Sajid5,Yadav Krishna Kumar67

Affiliation:

1. Department of Chemistry and Environmental Science Madan Mohan Malaviya University of Technology Gorakhpur India

2. Department of Chemistry, Swami Shraddhanand College Delhi University New Delhi India

3. Korea Research Institute of Chemical Technology Daejeon South Korea

4. Centre for Sustainable Technologies Indian Institute of Science Bengaluru India

5. Department of Chemistry, College of Science King Saud University Riyadh Saudi Arabia

6. Faculty of Science and Technology Madhyanchal Professional University Bhopal India

7. Environmental and Atmospheric Sciences Research Group, Scientific Research Center Al‐Ayen University, Thi‐Qar Nasiriyah Iraq

Abstract

AbstractElevated global pollution level is the prime reason that contributes to the onset of various harmful health diseases. The products of Biginelli reaction are enormously used in the pharmaceutical industry as they have antiviral, antibacterial, and calcium channel modulation abilities. This work reports a novel eosin Y sensitized boron graphitic carbon nitride (EY‐Ben‐g‐C3N4) as a photocatalyst that efficiently produced 3,4‐dihydropyrimidine‐2‐(1H)‐one by the Biginelli reaction of benzaldehyde, urea, and methyl acetoacetate. The photocatalyst EY‐Ben‐g‐C3N4 showed a successful generation of 3,4‐dihydropyrimidine‐2‐(1H)‐one (Biginelli product) in good yield via photocatalysis which is an eco‐friendly method and has facile operational process. In addition to the production of Biginelli products, the photocatalyst also showed a remarkable NADH regeneration of 81.18%. The incorporation of g‐C3N4 with boron helps increase the surface area and the incorporation of eosin Y which is an inexpensive and non‐toxic dye, and in Ben‐g‐C3N4, enhanced the light‐harvesting capacity of the photocatalyst. The production of 3,4‐dihydropyrimidine‐2‐(1H)‐one and NADH by the EY‐Ben‐g‐C3N4 photocatalyst is attributed to the requisite band gap, high molar absorbance, low rate of charge recombination, and increased capacity of the photocatalyst to harvest solar light energy.

Funder

King Saud University

Publisher

Wiley

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