Best Researcher Award
| Xin Xue | |
|---|---|
| Affiliation | Shenyang University of Chemical Technology |
| Country | China |
| Scopus ID | 60796067600 |
| Documents | 1 |
| Subject Area | Environmental and Sustainable Materials |
| Event | Global Innovation Technologist Awards |
Xin Xue
Shenyang University of Chemical Technology, China
Xin Xue is a researcher affiliated with Shenyang University of Chemical Technology, China, whose documented scholarly activity includes research in environmental and sustainable materials. The available Scopus record identifies one indexed document and reports no citations at the time of assessment. [1] This profile is considered in the context of the Best Researcher Award under the Global Innovation Technologist Awards.
Abstract
Xin Xue’s available publication record reflects emerging research activity in environmental and sustainable materials. The documented study investigates the photocatalytic synergistic activation of peroxydisulfate using FeMoO4@MoS2 for the degradation of tetracycline hydrochloride. The work addresses an environmental remediation problem involving pharmaceutical contaminants and explores material-assisted oxidation processes for pollutant degradation. [2]
Keywords
Photocatalysis; peroxydisulfate activation; FeMoO4@MoS2; tetracycline hydrochloride; environmental remediation; sustainable materials; pharmaceutical contaminants.
Introduction
Advanced oxidation and photocatalytic technologies are important areas of environmental materials research because they seek effective approaches for transforming persistent organic contaminants. Pharmaceutical residues such as antibiotics can present challenges for conventional wastewater treatment, creating interest in catalytic systems capable of promoting degradation reactions. The reported research by Xue and collaborators contributes to this broader field through investigation of a FeMoO4@MoS2-based system. [2]
Research Profile
The available bibliographic information places Xin Xue’s documented work within environmental and sustainable materials research. Scopus records one document associated with the supplied author identifier, with zero citations reported in the provided data. [1] The available record does not provide a verified h-index or ORCID identifier.
Research Contributions
The principal documented contribution concerns the development and evaluation of a composite catalytic material for contaminant degradation. By combining FeMoO4 and MoS2 within a photocatalytic peroxydisulfate activation framework, the study examines synergistic mechanisms relevant to advanced environmental treatment. [2]
Publications
The documented publication is “Photocatalytic synergistic activation of peroxydisulfate by FeMoO4@MoS2 for tetracycline hydrochloride degradation”, authored by Xin Xue, Zhongliang Shi, Shifeng Li, Man Xu, Xuan Cao and collaborators. It was published in the Journal of the Indian Chemical Society in 2026. The supplied bibliographic record reports zero citations. [2]
Research Impact
At the present assessment point, the quantitative citation impact is limited by the recency and size of the available publication record. Nevertheless, research addressing antibiotic degradation and catalytic environmental remediation is relevant to sustainable treatment technologies. Citation indicators should be interpreted alongside publication quality, methodological contribution, and subsequent scholarly uptake as the research record develops.
Award Suitability
The available evidence supports consideration for recognition based on a documented research contribution in environmental and sustainable materials. The publication demonstrates engagement with catalytic materials and pharmaceutical-contaminant degradation, while the current bibliometric record remains limited. Accordingly, award suitability should be evaluated using both the verified publication evidence and any additional qualitative materials supplied during the formal assessment.
Conclusion
Xin Xue’s available research profile reflects an emerging contribution to environmental and sustainable materials, particularly photocatalytic approaches for pharmaceutical pollutant degradation. The documented 2026 publication provides a relevant foundation for assessing future research development and scholarly impact. Further publications and citation activity may provide additional evidence of research influence over time.
External Links
References
- Elsevier. (n.d.). Scopus author details: Xin Xue, Author ID 60796067600. Scopus.
https://www.scopus.com/authid/detail.uri?authorId=60796067600 - Xue, X., Shi, Z., Li, S., et al. (2026). Photocatalytic synergistic activation of peroxydisulfate by FeMoO4@MoS2 for tetracycline hydrochloride degradation. Journal of the Indian Chemical Society.
- Journal of the Indian Chemical Society. (2026). Bibliographic record for the reported photocatalytic degradation study.
- Global Innovation Technologist Awards. (n.d.). Award and researcher recognition information.
https://innovationtechnologist.com/