Amartya Chakrabarti, Emily Alessandri
2024.8.26Applied Nano
tlooto Summary
ZnS-based nanomaterials have unique properties and applications in optoelectronics, sensors, catalysts, batteries, solar cells, and biomedical fields.
Abstract
ZnS is a II-VI semiconductor with a wide bandgap. ZnS-based nanomaterials have been produced in a variety of morphologies with unique properties and characteristic features. An extensive collection of research activities is available on various synthetic methodologies to produce such a wide variety of ZnS-based nanomaterials. In this comprehensive review, we thoroughly covered all the different synthetic techniques employed by researchers across the globe to produce zero-dimensional, one-dimensional, two-dimensional, and three-dimensional ZnS-based nanomaterials. Depending on their morphologies and properties, ZnS-based nanomaterials have found many applications, including optoelectronics, sensors, catalysts, batteries, solar cells, and biomedical fields. The properties and applications of ZnS-based nanostructures are described, and the scope of the future direction is highlighted.
Citation format
CHAKRABARTI, Amartya; ALESSANDRI, Emily. Syntheses, properties, and applications of zns-based nanomaterials. Applied Nano, 2024.