Shujat Ali | Plant Science | Research Excellence Award

Research Excellence Award

Shujat Ali
Independent, Pakistan · Plant Science

Shujat Ali
Affiliation Independent
Country Pakistan
Scopus ID 59804142900
Documents 9
Citations 60
h-index 4
Subject Area Plant Science
Event Natural Scientist Awards
ORCID 0000-0002-4467-6091

Shujat Ali is an independent researcher from Pakistan whose stated subject area is Plant Science. His research profile is represented in the Scopus author database by Author ID 59804142900 and currently records 9 documents, 60 citations, and an h-index of 4. These bibliometric indicators provide a concise quantitative view of his indexed scholarly output and citation impact. [1]

Abstract

Shujat Ali is an independent researcher from Pakistan associated with the subject area of Plant Science. His indexed research record comprises 9 documents and has received 60 citations, with an h-index of 4 according to the supplied Scopus profile information. [1] These indicators provide measurable evidence of scholarly dissemination and citation activity. His profile is considered in the context of the Research Excellence Award under the Natural Scientist Awards, with emphasis on research productivity, documented scholarly visibility, and contributions to Plant Science. [3]

Keywords

Shujat Ali; Plant Science; Research Excellence Award; Natural Scientist Awards; Pakistan; scholarly research; bibliometrics; Scopus; citation impact; research productivity.

Introduction

Plant Science encompasses the scientific study of plants, including their biology, physiology, ecology, development, genetics, cultivation, and interactions with their surrounding environments. Research in this broad field contributes to understanding plant systems and supports scientific work relevant to agriculture, environmental stewardship, food resources, and biological discovery.

Research Profile

The available profile identifies Shujat Ali as an independent researcher working within Plant Science. His Scopus Author ID is 59804142900, providing a persistent identifier for the corresponding indexed author record. The profile contains 9 documents, 60 citations, and an h-index of 4. [1]

Research Contributions

The documented profile places Shujat Ali’s scholarly activity within Plant Science. The available bibliometric record demonstrates a defined body of indexed research comprising 9 documents and a citation count of 60. [1] These figures indicate that his publications have achieved measurable visibility within the indexed scholarly literature.

Publications

The Scopus profile associated with Author ID 59804142900 records 9 documents. [1] The supplied information does not provide a verified publication-by-publication bibliography, DOI list, journal titles, publication dates, or article titles. Accordingly, no individual publication titles or DOI identifiers are attributed to Shujat Ali here without direct bibliographic verification.

Research Impact

The available bibliometric indicators show that the 9 indexed documents associated with the profile have received 60 citations, resulting in an h-index of 4. [1] Citations can provide evidence that published work has been used or discussed by subsequent scholarly research, while the h-index combines publication and citation information into a single measure of sustained citation performance.

Award Suitability

Shujat Ali’s profile is relevant to consideration for a Research Excellence Award because it identifies Plant Science as his subject area and documents an indexed scholarly record consisting of 9 documents, 60 citations, and an h-index of 4. [1] These indicators provide an objective starting point for evaluating research productivity and scholarly visibility.

Conclusion

Shujat Ali is presented as an independent researcher from Pakistan working in Plant Science, with a Scopus-indexed profile containing 9 documents, 60 citations, and an h-index of 4. [1] His ORCID identifier further provides a persistent means of distinguishing his scholarly identity and connecting research outputs to the researcher. [2]

1. ORCID Profile — Shujat Ali

2. Scopus Author Profile — Author ID 59804142900

3. Natural Scientist Awards — Official Website

References

1 Elsevier. (n.d.). Scopus author details: Shujat Ali, Author ID 59804142900. Scopus.
          https://www.scopus.com/authid/detail.uri?authorId=59804142900

2. ORCID. (n.d.). ORCID record: Shujat Ali, ORCID iD 0000-0002-4467-6091. ORCID.
           https://orcid.org/0000-0002-4467-6091

3. Natural Scientist Awards. (n.d.). Natural Scientist Awards — Official Award Platform.
          https://naturalscientist.org/

4. Hirsch, J. E. (2005). An index to quantify an individual’s scientific research output. Proceedings of the National Academy of Sciences, 102(46), 16569–16572.DOI:
        https://www.pnas.org/doi/10.1073/pnas.0507655102

5. Bornmann, L., & Daniel, H.-D. (2007). What do we know about the h index? Journal of the American Society for Information Science and Technology, 58(9), 1381–1385.DOI:
         https://onlinelibrary.wiley.com/doi/10.1002/asi.20609

This academic recognition profile is based on the researcher information supplied for this page and the referenced public researcher-identification resources. Bibliometric values may change as indexing databases are updated.

 

Farzad Rasouli | Abiotic Stress | Best Researcher Award

Assoc. Prof. Dr. Farzad Rasouli | Abiotic Stress | Best Researcher Award

Researcher | University of Maragheh | Iran

Assoc. Prof. Dr. Farzad Rasouli is a highly accomplished researcher with over a decade of experience in plant physiology, breeding, and sustainable agriculture. His research primarily focuses on understanding the effects of arbuscular mycorrhiza on plant growth under both normal and stress conditions, with the broader goal of enhancing sustainable food production. Dr. Rasouli has authored nearly 60 peer-reviewed publications in high-impact international journals, earning 926 citations across 51 indexed documents and achieving an h-index of 18, which reflects the strong influence and consistency of his scholarly contributions. His expertise spans a wide range of experimental and analytical techniques, including vegetable production, grafting, in vitro culture, and the assessment of biochemical parameters such as photosynthetic pigments, proteins, carbohydrates, MDA, proline, and H₂O₂. He is also highly proficient in data analysis and modeling using R, SAS, SPSS, Minitab, and MSTATC, and has strong familiarity with bioinformatics platforms like Geneious Prime, MEGA11, Cytoscape, and CLC Genomic Workbench. Dr. Rasouli’s innovative research has explored plant responses to environmental stresses, nanomaterial interactions, and the development of biostimulants and nanocomposites for improved crop tolerance and productivity. Notable studies include work on salinity stress in tomato and grape, growth responses in lettuce under mycorrhiza inoculation, and the dual role of carbon nanotubes in plant physiology. Having also reviewed around 100 scientific papers, he actively contributes to advancing scientific rigor and dissemination in the field. His dedication, innovation, and impactful research position him as a leading figure in agricultural and plant science research.

Profile:  Scopus  |  ORCID  |  Google Scholar ResearchGate

Featured Publications

Gohari, G., Safai, F., Panahirad, S., Akbari, A., Rasouli, F., Dadpour, M. R., & Fotopoulos, V. (2020). Modified multiwall carbon nanotubes display either phytotoxic or growth promoting and stress protecting activity in Ocimum basilicum L. in a concentration-dependent manner. Chemosphere, 249, 126171.

Ostadi, A., Javanmard, A., Machiani, M. A., Morshedloo, M. R., Nouraein, M., Rasouli, F., & Maggi, F. (2020). Effect of different fertilizer sources and harvesting time on the growth characteristics, nutrient uptakes, essential oil productivity and composition of Mentha × piperita L. Industrial Crops and Products, 148, 112290.

Aazami, M. A., Rasouli, F., & Ebrahimzadeh, A. (2021). Oxidative damage, antioxidant mechanism and gene expression in tomato responding to salinity stress under in vitro conditions and application of iron and zinc. BMC Plant Biology, 21(1), 597.

Aazami, M. A., Maleki, M., Rasouli, F., & Gohari, G. (2023). Protective effects of chitosan-based salicylic acid nanocomposite (CS-SA NCs) in grape (Vitis vinifera cv. ‘Sultana’) under salinity stress. Scientific Reports, 13(1), 883.

Rasouli, F., Amini, T., Asadi, M., Hassanpouraghdam, M. B., & Aazami, M. A. (2022). Growth and antioxidant responses of lettuce (Lactuca sativa L.) to arbuscular mycorrhiza inoculation and seaweed extract foliar application. Agronomy, 12(2), 401.