Nikolay Serov | Spectroscopy | Innovative Research Award

Innovative Research Award

Nikolay Serov — D. S. Rozhdestvensky Optical Society, Russia

Nikolay Serov
Affiliation D. S. Rozhdestvensky Optical Society
Country Russia
Scopus ID 6701668745
Documents 4
Citations 1
h-index 1
Subject Area Spectroscopy
Event Technology Scientists Awards
ORCID 0000-0001-6145-6405

Nikolay Serov is a researcher associated with the D. S. Rozhdestvensky Optical Society whose documented scholarly activity includes work connecting spectroscopy, information models, and the interaction of light with matter. His research profile provides a basis for recognition in innovative research, particularly through conceptual approaches to spectroscopic information and physical systems. [1] [3]

Abstract

Nikolay Serov’s research profile is situated within spectroscopy and information-oriented studies of light–matter interaction. His documented work examines relationships between optical information, absorption spectra, atomic or molecular characteristics, and models for organizing spectroscopic knowledge. A published study proposes an information model connecting photon codes with matter and explores systematic relationships involving electronic terms and ionization potentials. [1] This direction combines spectroscopy with conceptual information modeling and contributes to discussion of how optical measurements may encode structured information about physical systems. His researcher identifiers further support the attribution and traceability of the scholarly record associated with this profile. [2] [3]

Keywords

Spectroscopy; light–matter interaction; information modeling; optical information; absorption spectra; photon codes; electronic terms; ionization potentials; quantum optics; spectroscopic databases. [1]

Introduction

Spectroscopy provides methods for studying matter through its interaction with electromagnetic radiation, while information modeling offers frameworks for organizing complex relationships within scientific observations. Serov’s published research connects these perspectives by examining how spectroscopic characteristics can be interpreted through an information-oriented model of light and matter. [1] His work therefore occupies an interdisciplinary space between optical science, spectroscopy, and theoretical information analysis.

Research Profile

The available research profile identifies Nikolay Serov with the D. S. Rozhdestvensky Optical Society in Russia and the subject area of spectroscopy. Bibliographic identifiers associate the researcher with Scopus author ID 6701668745 and ORCID 0000-0001-6145-6405, supporting consistent identification across scholarly systems. [2] [3]

Research Contributions

A documented contribution is Serov’s information model of the relationship between light and matter, which investigates functional relationships involving photon information-energy codes, absorption spectra, electronic terms, and ionization potentials. [1] The study also considers systematic patterns in molecular and atomic spectroscopic information, presenting a conceptual framework intended to support broader interpretation and organization of spectroscopy data.

Publications

The documented publication record includes the 2021 article “An Information Model of the Relationship of Light to Matter,” published in Automatic Documentation and Mathematical Linguistics, volume 55, issue 3, pages 110–121. [1] The article develops an information-oriented treatment of spectroscopic relationships and provides the principal publication evidence considered in this academic recognition profile.

Research Impact

The available bibliographic record reports four documents, one citation, and an h-index of one for the specified Scopus author profile. [2] These indicators provide quantitative context but should be interpreted alongside the substance of the research. The documented publication introduces an information-based perspective on spectroscopy and light–matter relationships, offering a conceptual contribution to this interdisciplinary area. [1]

Award Suitability

Serov’s profile is relevant to the Innovative Research Award because the documented work applies an information-modeling perspective to spectroscopy and the relationship between light and matter. [1] The research demonstrates an interdisciplinary orientation and proposes a structured conceptual approach to spectroscopic information. The award assessment should consider this contribution together with the broader verified publication record and research trajectory. [2] [3]

Conclusion

Nikolay Serov’s documented scholarship presents a distinctive connection between spectroscopy and information modeling, particularly through research on the relationship between light, matter, and spectroscopic information. [1] His indexed researcher identifiers provide a basis for scholarly attribution and profile verification. [2] [3] Within the available evidence, this interdisciplinary research direction provides a reasonable scholarly basis for consideration under the Innovative Research Award.

References

  1. Serov, N. V. (2021). An information model of the relationship of light to matter. Automatic Documentation and Mathematical Linguistics, 55(3), 110–121.
    https://doi.org/10.3103/S0005105521030079
  2. Elsevier. (n.d.). Scopus author details: Nikolay Serov, Author ID 6701668745. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=6701668745
  3. ORCID. (n.d.). Nikolay Serov: ORCID record 0000-0001-6145-6405. ORCID.
    https://orcid.org/0000-0001-6145-6405

Monalisha Nayak | spectroscopy | Best Researcher Award

Ms. Monalisha Nayak | spectroscopy | Best Researcher Award

Research Scholar | Banaras Hindu University | India

Ms. Monalisha Nayak from Banaras Hindu University, Varanasi, India, is an emerging researcher specializing in nanomaterials, semiconductor physics, and optical material engineering. Her work primarily focuses on the design and characterization of doped metal oxide nanostructures, particularly transition metal–doped ZnO nanoparticles, to enhance their optical, magnetic, and electronic functionalities. Ms. Nayak has authored 5 research publications that collectively reflect her growing contribution to the field of advanced materials and nanotechnology. Her research has attracted 3 citations and she holds an h-index of 1, marking the early yet impactful phase of her academic career. A notable publication, “Concentration-engineered structural and optical properties in Fe/Ni Co-Doped ZnO nanoparticles” (Materials Letters, 2026), highlights her innovative approach to concentration engineering, investigating how dual doping modifies the structural defects, bandgap behavior, and photoluminescent responses of ZnO-based systems. Through advanced characterization techniques such as X-ray diffraction (XRD), UV–Vis spectroscopy, and photoluminescence (PL) analysis, she explores the intricate relationship between crystal structure, defect chemistry, and optical emission properties. Her studies contribute significantly to the understanding of defect-controlled tuning of semiconductor materials, with potential applications in optoelectronics, spintronics, photocatalysis, and energy devices. By integrating synthesis innovation with materials characterization, Ms. Nayak’s research advances the scientific foundations of multifunctional nanomaterials, establishing her as a promising figure in the expanding domain of functional oxide nanoscience and photonic material engineering.

Profiles: Scopus | Google Scholar

Featured Publications

1. Patel, C. B., Nayak, M., Pandey, S., Prakash, O., Singh, S. K., & Singh, R. K. (2024). Spectroscopic study of coordination of Cu²⁺ with liquid crystal HBDBA: An investigation at ultra-trace level. Chemical Physics Impact, 8, 100649.
Cited by: 3

2. Nayak, M., Patel, C. B., Mishra, A., Singh, R., & Singh, R. K. (2024). Unveiling the influence of glutathione in suppressing the conversion of aspirin to salicylic acid: A fluorescence and DFT study. Journal of Fluorescence, 34(3), 1441–1451.
Cited by: 1

3. Seth, S., Mondal, B., Nayak, M., & Pal, S. P. (2025). Effect of different synthesis parameters on the structural, morphological and optical properties of hydrothermally synthesized Tungsten Diselenide (WSe₂) nanostructures. Materials Today Communications, Article 113793.

4. Mishra, M., Verma, A., Yadav, R., Singh, S., Singh, S., Srivastava, R., Singh, S. K., … (2025). Concentration-engineered structural and optical properties in Fe/Ni co-doped ZnO nanoparticles. Materials Letters, Article 139398.

5. Nayak, M., Patel, C. B., Prakash, O., Singh, A. K., & Singh, R. K. (2025). Detection of a neurotoxin quinolinic acid at ultra-trace amount: SERS and DFT study. Journal of Raman Spectroscopy.