Green Synthetic Strategies for Porphyrins: Toward Sustainable Functional Macrocycles
Зелёные синтетические стратегии для порфиринов: к устойчивым функциональным макроциклам
2025-11-01
SCID: 54.1/f64n7jc7
Discuss with AI
electrochemical methodsgreen chemistrymechanochemistrymicrowave-assisted synthesisporphyrin synthesis
Figures from the paper
Abstract (AI)
Abstract Porphyrins are highly conjugated macrocyclic compounds that play vital roles in both natural and synthetic systems, with broad applications in catalysis, energy conversion, environmental remediation, and biomedicine. However, conventional synthetic approaches are often associated with harsh reaction conditions, toxic solvents, and low overall sustainability. In response, green chemistry principles have increasingly guided the development of more environmentally benign strategies for porphyrin synthesis. This review systematically examines recent progress (primarily from 2015 to 2025 in the development of green and sustainable synthetic methodologies for porphyrins, including solvent‐free techniques, the use of green solvents, microwave‐ and ultrasound‐assisted approaches, mechanochemical processes, and emerging biocatalytic and electrochemical methods. Representative studies are analyzed with respect to yield, scalability, and alignment with green chemistry metrics such as atom economy, energy efficiency, and waste reduction. By highlighting both achievements and current challenges, this review aims to guide future efforts toward more sustainable and industrially viable porphyrin syntheses.
Key Findings
1
Conventional porphyrin syntheses commonly involve harsh conditions, toxic solvents, and poor sustainability.
2
Green strategies have shown progress toward improved sustainability and potential industrial viability, but notable challenges and limitations remain.
3
Recent green methodologies (2015–2025) include solvent-free, green solvents, microwave- and ultrasound-assisted, mechanochemical, biocatalytic, and electrochemical approaches.
4
Representative studies are assessed for yield, scalability, and green metrics like atom economy, energy efficiency, and waste reduction.
5
The review synthesizes achievements and gaps to guide future development of more sustainable, scalable porphyrin syntheses.
Research Object
Porphyrins (macrocyclic conjugated compounds)
Research Subject
Green and sustainable synthetic methodologies for porphyrins, including solvent-free, green solvents, microwave- and ultrasound-assisted, mechanochemical, biocatalytic, and electrochemical approaches evaluated for yield, scalability, atom economy, energy efficiency, and waste reduction
Publication Details
Publication Date
2025-11-01
Journal
Publisher
ISSN
Cited by
2
Access Type
Author Information
Download PDF
Subscribe to digest