Special Issues

Functional Chalcogenide Nanomaterials for Catalytic Sensing and Biomedical Therapy

Submission Deadline: 20 March 2027 View: 34 Submit to Special Issue

Guest Editor(s)

Prof. Yuguang Lv

Email: yuguanglv@163.com

Affiliation: School of Pharmacy, Jiamusi University, Jiamusi, China

Homepage: Not available

Research Interests: chalcogenide nanomaterials

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Summary

Chalcogenide nanomaterials possess unique tunable band structures and abundant surface active sites, laying solid foundations for catalysis, optical detection and biomedicine. Their adjustable metal valence states and designable heterointerfaces further endow these nanomaterials with remarkable synergistic catalytic capacities unavailable in single-component materials.

This Special Issue aims to collect high-quality original research papers, comprehensive review articles and short communications focusing on the rational design, precise structural regulation and multi-scenario multifunctional applications of metal chalcogenide nanomaterials. We sincerely welcome innovative works that systematically reveal the intrinsic structure–activity relationships of chalcogenide nanosystems, as well as novel material fabrication strategies and catalytic mechanisms oriented toward real-world environmental remediation and biomedical diagnosis & therapy. Submissions covering in-situ characterization techniques, theoretical calculation simulations and practical application performance evaluation are highly encouraged, and all accepted manuscripts are expected to advance the development of integrated multi-functional chalcogenide catalytic materials.

The following are the suggested themes and are not limited to:
· Controlled synthesis and heterostructure construction of metal chalcogenide nanomaterials
· Chalcogenide-based nanozymes for colorimetric/fluorescence visual sensing
· Photocatalytic degradation of organic pollutants by chalcogenide semiconductors
· Antibacterial and anti-inflammatory performance of chalcogenide nanocomposites
· Optoelectronic property modulation of selenium/tellurium-containing nanomaterials


Keywords

chalcogenide nanomaterials, metal chalcogenides, nanozyme, photocatalysis, visual sensing, antibacterial material, heterostructure, optoelectronic property, biosensing

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