Manish Katiya | Organic Chemistry | Innovative Research Award

Innovative Research Award

Manish Katiya
Yashwantrao Chavan College of Engineering

Manish Katiya
Affiliation Yashwantrao Chavan College of Engineering
Country India
Scopus ID
Documents 10
Citations 28
h-index 3
Subject Area Organic Chemistry
Event International Analytical Chemistry Awards
ORCID 0000-0002-9542-3430
Scopus Author Profile

Manish Katiya is a researcher affiliated with Yashwantrao Chavan College of Engineering, India, with a stated research focus in Organic Chemistry and analytical research. The researcher profile supplied for this recognition page records 10 documents, 28 citations, and an h-index of 3.Contemporary analytical research frequently crosses disciplinary boundaries and incorporates spectroscopy, chromatography, mass spectrometry, electrochemical techniques, and related measurement approaches.[2]

Abstract

This academic recognition profile describes Manish Katiya’s supplied research record in Organic Chemistry and its relationship to analytical chemistry. The profile identifies an affiliation with Yashwantrao Chavan College of Engineering in India and records bibliometric indicators of 10 documents, 28 citations, and an h-index of 3. Such indicators provide quantitative context for scholarly visibility but do not independently measure the quality or originality of individual research outputs. Scopus describes author profiles as resources containing publication, citation, affiliation, subject-area, and identifier information.[1]

Keywords

  • Organic Chemistry
  • Analytical Chemistry
  • Chemical Measurement
  • Molecular Analysis
  • Chromatography
  • Spectroscopy

Introduction

Analytical chemistry is concerned with obtaining reliable information about the composition and properties of chemical systems. Modern practice combines established separation and detection methods with increasingly sensitive instrumental platforms, allowing researchers to characterize complex samples and quantify chemical constituents. The field is closely connected with organic chemistry because the identification and measurement of organic molecules often require complementary separation, structural, and detection strategies.[2] Contemporary analytical workflows may also integrate chromatography, electrophoresis, mass spectrometry, and spectroscopic approaches.

Research Profile

The supplied profile places Manish Katiya within Organic Chemistry and identifies Yashwantrao Chavan College of Engineering as the institutional affiliation. The provided Scopus identifier is 55574195496, while the supplied Scopus profile URL is included in the profile for direct verification. ORCID provides a persistent identifier intended to distinguish researchers and connect their scholarly contributions across systems. The stated ORCID is 0000-0002-9542-3430 and should be consulted directly when validating the identity record.[3]

Research Contributions

The available input does not provide a complete publication-by-publication description of Manish Katiya’s research, so specific experimental findings are not attributed without supporting evidence. Within the stated subject area, relevant analytical research may involve the development, optimization, validation, or application of methods for chemical characterization.

Publications

The supplied record reports 10 indexed documents associated with the researcher profile. A complete publication bibliography should be verified against the researcher’s current Scopus and ORCID records before individual titles, journals, publication dates, or citation relationships are presented as definitive. Scopus author records are designed to group publications using author identifiers and related profile information, helping distinguish researchers with similar names.[1]

Research Impact

The supplied bibliometric record indicates 28 citations and an h-index of 3. These values offer a snapshot of citation-based visibility within the indexed literature and should be interpreted according to database coverage, publication age, field practices, and profile accuracy. Citation counts can change as new publications are indexed and existing records are corrected or consolidated. Accordingly, the figures should be treated as time-sensitive indicators rather than permanent measures of research quality or significance.

Award Suitability

The supplied academic information provides a reasonable profile for consideration in an analytical chemistry recognition context because it identifies Organic Chemistry as the subject area and records an indexed research output and citation history. The International Analytical Chemistry Awards provides the stated event context for this recognition page. Final award eligibility, nomination status, selection criteria, and recognition decisions should be determined by the official award organizers rather than inferred solely from bibliometric indicators.

Conclusion

Manish Katiya’s supplied academic profile presents a researcher associated with Yashwantrao Chavan College of Engineering and Organic Chemistry in India. The reported record includes 10 documents, 28 citations, and an h-index of 3, together with Scopus and ORCID identifiers for profile verification. These details provide a concise basis for describing the researcher’s indexed scholarly presence in the context of analytical chemistry.

References

  1. Elsevier. (n.d.). Scopus author details and author identification resources. Scopus Tutorials.
    https://tutorials.scopus.com/EN/AuthorDetails/sc_AuthorDetails_textOnly.html
  2. ORCID. (n.d.). ORCID: Connecting research and researchers. ORCID.
    https://orcid.org/0000-0002-9542-3430
  3. Rahn, K. L., & Anand, R. K. (2020). Recent Advancements in Bipolar Electrochemical Methods of Analysis. Analytical Chemistry. DOI: https://doi.org/10.1021/acs.analchem.0c04524
  4. Davis, J. A., et al. (2020). Visualization of Streams of Small Organic Molecules in Continuous-Flow Electrophoresis. Analytical Chemistry, 92(4), 2907–2910: https://doi.org/10.1021/acs.analchem.9b05734
  5. Analytical Chemistry Awards. (n.d.). International Analytical Chemistry Awards. Official award website.
    https://analyticalchemistry.org/

Driss Chebabe | Organic Chemistry | Research Excellence Award

Prof. Driss Chebabe | Organic Chemistry | Research Excellence Award

Moulay Ismail University of Meknes, Faculty of Sciences and Techniques Errachidia | Morocco

Driss Chebabe is a Professor of Organic and Physical Chemistry at Moulay Ismail University, Morocco, and a recognized expert in organic synthesis, corrosion science, and materials protection. He leads the Natural Substances & Synthesis & Modeling research team and is a permanent member of the IMERN Laboratory. His research emphasizes the design of heterocyclic compounds, eco-friendly corrosion inhibitors, and bioactive molecules, combining electrochemical studies, surface analysis, and theoretical modeling, including DFT calculations. With an H-index of 20, over 1,170 citations, a patent, and extensive publications, he contributes significantly to sustainable corrosion protection while mentoring graduate researchers and advancing applied organic chemistry.

Citation Metrics (Scopus)

 1200
 500
 200
   50
     0

Citations
1,172

Documents
61

h-index
20

Citations

Documents

h-index

View Scopus Profile View Google Scholar Profile

Featured Publications

Corrosion inhibition of Armco iron in 1 M HCl solution by alkyltriazoles

– Corrosion Science, 45(2), 309–320 (2003) · 118 Citations

Rajendra Kumar Konidena | Organic Chemistry | Best Researcher Award

Assist. Prof. Dr. Rajendra Kumar Konidena | Organic Chemistry | Best Researcher Award

Indian Institute of Technology-Patna, India

👨‍🎓Profiles

🎓 Early Academic Pursuits

Dr. Rajendra Kumar Konidena embarked on his academic journey with a strong foundation in the sciences, completing his secondary education and intermediate studies with notable scores in Andhra Pradesh, India. He earned his Bachelor of Science degree in Chemistry, Physics, and Mathematics from Acharya Nagarjuna University with an impressive 85% marks. Progressing further, he completed his Master of Science in Organic Chemistry at VIT University with a CGPA of 8.99/10. His academic rigor culminated in a Ph.D. in Chemistry from the Indian Institute of Technology (IIT) Roorkee, where he specialized in “Multi-Substituted Carbazole-Based Functional Materials for Optoelectronic Applications” under the supervision of Dr. K. R. Justin Thomas.

💼 Professional Endeavors

Dr. Konidena has held several prestigious fellowships reflecting his sustained research excellence. He was awarded the Ramanujan Fellowship by SERB-India, the ERA postdoctoral fellowship by Marie-Curie Actions, and fellowships by the Japanese Society for the Promotion of Science (JSPS), National Research Foundation (NRF) of South Korea, and the National Postdoctoral Fellowship (NPDF) by SERB-DST India. He also undertook key research projects funded by national and international agencies, including leading a JSPS-funded project on MR-TADF emitters and collaborating on an NRF-funded project aimed at enhancing TADF device efficiency.

🔬 Contributions and Research Focus

Dr. Konidena’s research primarily focuses on the design and synthesis of organic π-conjugated materials with applications in cutting-edge optoelectronic devices such as organic light-emitting diodes (OLEDs), solar cells, molecular sensors, and biomedical devices. His expertise spans molecular design of heterocyclic compounds, photophysical characterizations, electrochemical analysis, and fabrication of organic thin films and devices. His work includes pioneering multi-substituted carbazole materials and developing stable, color-tuneable organic emitters for OLED technology.

🌟 Impact and Influence

His research has a wide-reaching impact on the advancement of organic electronics, contributing to innovative materials that improve device performance and stability. Through his funded projects and collaborations with both academic and industrial partners, Dr. Konidena has helped drive forward sustainable and efficient organic optoelectronic technologies. His achievements have been recognized globally through prestigious fellowships and awards.

📚 Academic Citations and Recognition

His research outputs have been well received in the scientific community, as reflected in numerous fellowships and awards for his doctoral and postdoctoral work. Notably, he secured the Seal of Excellence for his Marie-Curie fellowship proposal and consistently ranks highly in national examinations such as the CSIR-National Eligibility Test and GATE. His scholarly contributions demonstrate significant academic recognition and influence.

🛠️ Technical Skills

Dr. Konidena is proficient in a broad range of experimental techniques essential for organic electronics research. These include organic synthesis and purification, structural analysis via NMR, MALDI-TOF, ESI-MS, and FT-IR, electrochemical techniques like cyclic voltammetry, and detailed optical characterizations such as steady-state and time-resolved photoluminescence. He is skilled in physical property analyses including thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC), thin film deposition methods including spin coating and high vacuum multilayer film growth, as well as device fabrication and characterization for OLEDs.

👩‍🏫 Teaching and Mentorship Experience

Throughout his doctoral and postdoctoral tenures, Dr. Konidena has been actively involved in mentoring students and junior researchers, guiding them in experimental design and execution within the domain of organic functional materials. His experience contributes not only to scientific advancements but also to the training and development of the next generation of researchers in organic electronics.

🌱 Legacy and Future Contributions

With a trajectory marked by sustained innovation and scholarly excellence, Dr. Konidena is poised to continue contributing to the field of organic optoelectronics. His future work is expected to focus on the development of novel, efficient organic materials and devices with applications in next-generation electronics and sustainable technologies. His ongoing collaborations with academic institutions and industry partners, including consultancy projects, highlight his commitment to translating research into practical applications.

📖Notable Publications

Leveraging quinoxaline functionalization for the design of efficient orange/red thermally activated delayed fluorescence emitters
Authors: Shantaram Kothavale, Rajendra Kumar Konidena, Hyunjung Lee, Jun Yeob Lee
Journal: Chemical Communications
Year: 2025

Recent advances in the molecular designs of near ultraviolet emitters for efficient organic light emitting diodes
Authors: P. Keerthika, Ankit Kumar, Arthanareeswari Maruthapillai, Venkatramaiah Nutalapati, Rajendra Kumar Konidena
Journal: Journal of Photochemistry and Photobiology C: Photochemistry Reviews
Year: 2025

Strategic molecular design of efficient solution- and vacuum-processable deep-red thermally activated delayed fluorescence emitters featuring remarkable color saturation
Authors: Shantaram Kothavale, Rajendra Kumar Konidena, Won Jae Chung, Unhyeok Jo, Songkun Zeng, Yafei Wang, Jun Yeob Lee
Journal: Chemical Engineering Journal
Year: 2024

Facile dimerization strategy for producing narrowband green multi-resonance delayed fluorescence emitters
Authors: Minlang Yang, Rajendra Kumar Konidena, So Shikita, Takuma Yasuda
Journal: Journal of Materials Chemistry C
Year: 2023

Marching Toward Long‐Wavelength Narrowband Emissive Multi‐Resonance Delayed Fluorescence Emitters for Organic Light Emitting Diodes
Authors: P. Keerthika, Rajendra Kumar Konidena
Journal: Advanced Optical Materials
Year: 2023

Neoteric Advances in Oxygen Bridged Triaryl Boron‐based Delayed Fluorescent Materials for Organic Light Emitting Diodes
Authors: Kenkera Rayappa Naveen, Rajendra Kumar Konidena, P. Keerthika
Journal: The Chemical Record
Year: 2023