Related Experiment Video
Updated: Feb 6, 2026

The Effect of Interfacial Chemical Bonding in TiO2-SiO2 Composites on Their Photocatalytic NOx Abatement Performance
Published on: July 4, 2017
Circularity-engineered functional 2D materials: advances and commercialization insights for photocatalytic
Sahil Chauhan1,2, Prakash Ajay Taksal1,3, Jayanta Bhattacharya1,3,4,5
1School of Environmental Science and Engineering, Indian Institute of Technology Kharagpur, West Bengal - 721302, India.
Abstract:
Since the discovery of graphene in 2004, two-dimensional (2D) photoactive materials have gained significant attention owing to their exceptional thermal, electrical, and mechanical properties, as well as their high specific surface area and tunable electronic structure. While photocatalysis remains a promising approach for the degradation of persistent contaminants (PCs), recent advances in materials science have shifted the focus toward 2D material-based heterojunction systems. These systems exhibit abundant reactive sites, enhanced charge transport and separation efficiencies, and robust redox capabilities. This review comprehensively highlights major breakthroughs in 2D metal oxides, transition metal dichalcogenides, metal-free photocatalysts, and MXene-derived heterojunction architectures that demonstrate strong potential for PC detoxification. Furthermore, herein emerging green synthesis strategies that introduce a new dimension to 2D material production, emphasizing the growing use of waste-derived precursors to achieve environmentally benign fabrication, are outlined. Notably, these routes offer dual advantages by lowering production costs and reducing reliance on hazardous chemicals. The article concludes with an integrated perspective on present challenges and future opportunities for 2D heterojunction systems within a circular engineering framework. Finally, the recent progress and commercialization pathways for deploying circularity engineered 2D material-based photocatalytic technologies as sustainable advanced oxidation systems for the effective remediation of PCs are elaborated in detail.
Related Concept Videos
Circular Shafts - Elastoplastic Materials
As torque on the...
Overview of Advanced Functional Groups
Functional groups are groups of atoms with specific chemical properties that occur within organic molecules and are sometimes denoted as “R”. Functional groups can “functionalize” a compound by enabling it to adopt different physical and chemical properties.
Types of Advanced Functional Groups
The table below summarizes some of the major functional groups in organic chemistry.
Regulated Protein Degradation
Protein degradation plays two important roles in the cells. It helps to protect cells from misfolded or damaged proteins before they lead to a...
Regulated Protein Degradation
Proteins: From Genes to Degradation
Transcription is the synthesis of RNA...
Proteins: From Genes to Degradation

