Editorial Board Member
| Nuerbiya Yalikun | |
|---|---|
| Affiliation | Xinjiang University |
| Country | China |
| Scopus ID | 57194168608 |
| Documents | 36 |
| Citations | 447 |
| h-index | 11 |
| Subject Area | Coal Clean |
| Event | International Research Chemistry Awards |
Nuerbiya Yalikun is a researcher affiliated with Xinjiang University in China whose work encompasses coal chemistry, clean coal conversion, carbon-based materials, electrochemical sensing, and related chemical-engineering applications. Public institutional information identifies Yalikun as an associate professor in chemical technology, with research directions including fundamental coal chemistry, clean coal conversion, and coal-derived carbon materials and their applications.[1]
Abstract
Nuerbiya Yalikun is a chemistry and chemical-engineering researcher associated with Xinjiang University. The research profile is centered on coal chemistry and clean coal conversion, with related work involving coal-derived carbon materials, porous carbon, electrochemical sensing, thermodynamic properties, deep eutectic solvents, and chemical-process applications.[1]
Keywords
Coal Chemistry, Clean Coal Conversion, Coal-Derived Carbon Materials, Electrochemical Sensors, Porous Carbon, Deep Eutectic Solvents, Chemical Engineering, and Thermodynamic Properties represent interconnected research areas focused on sustainable coal utilization, advanced carbon-material development, electrochemical analysis, solvent systems, and chemical-process optimization.[2]
Introduction
The available publication record further indicates involvement in electrochemical sensing, deep eutectic solvent systems, thermodynamic analysis, carbon-material preparation, and chemical-process research. Recent publications have included work on electrochemical monitoring of chemical oilfield tracers and the use of coal-derived carbon precursors for sensor development.[3]
Research Profile
Yalikun’s research profile combines resource chemistry with functional materials and analytical technologies. The Xinjiang University faculty profile identifies chemical technology as the professional field and lists coal clean conversion and coal-derived carbon materials among the principal research directions. The researcher has also contributed to studies of deep eutectic solvents and thermodynamic properties and indicating a broader interest in chemical systems relevant to separation.[4]
Research Contributions
A notable component of the research record concerns the development of carbon-based materials for electrochemical sensing. Xinjiang University lists representative research involving biomass-derived activated carbon, coal-liquefaction-residue-based carbon materials, coal-pitch-derived porous carbon, and doped carbon materials for electrochemical detection.[3]
Publications
Representative publications associated with Nuerbiya Yalikun include studies in carbon materials, electrochemical sensing, deep eutectic solvents, thermodynamics, and chemical engineering. The following examples illustrate the range of the documented research record rather than constituting a complete bibliography.[4]
Research Impact
The supplied bibliometric profile records 36 Scopus-indexed documents, 447 citations, and an h-index of 11. These indicators suggest sustained scholarly activity and measurable citation visibility within the indexed literature. Bibliometric measures should, however, be interpreted in relation to publication age, disciplinary citation practices, collaboration patterns, and the specific scope of the research field.[2]
Award Suitability
The researcher’s publication record includes peer-reviewed work in established chemistry and chemical-engineering journals, including studies with identifiable DOI records. Accordingly, the profile can be considered aligned with an award category emphasizing research contribution, chemical innovation, clean-resource utilization, or materials-oriented chemistry.[3]
Conclusion
Nuerbiya Yalikun’s academic profile reflects a research program focused primarily on coal chemistry and clean conversion, complemented by work on carbon-based materials, electrochemical sensing, solvent systems, and chemical thermodynamics. The supplied Scopus indicators, together with institutional and publication evidence, demonstrate an established research presence in areas relevant to contemporary chemistry and chemical engineering.[4]
External Links
References
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- Elsevier. (n.d.). Scopus author details: Nuerbiya Yalikun, Author ID 57194168608. Scopus.
https://www.scopus.com/pages/authors/57194168608 - Yalikun, N., Huo, T., Gong, H., Musa, B., & Hu, G. (2025). Recent advances in electrochemical monitoring for the detection of the chemical oilfield tracer carmine. RSC Advances, 15, 26412–26419. DOI: 10.1039/D5RA03456F.
https://doi.org/10.1039/D5RA03456F - Jiang, H., Wang, H., Yalikun, N., et al. (2023). Heterogeneous Catalytic Peroxide Oxidation Inducing Surface Reactions Toward Flotation Extraction of Hazardous Poly(Vinyl Chloride) From Waste Plastics. Industrial & Engineering Chemistry Research, 62, 15136–15147. DOI: 10.1021/acs.iecr.3c01608.
https://doi.org/10.1021/acs.iecr.3c01608 - International Research Chemistry Awards. (n.d.).
https://researchchemistry.org
- Elsevier. (n.d.). Scopus author details: Nuerbiya Yalikun, Author ID 57194168608. Scopus.