Appikatla Phani Kumar | Electronics | Young Researcher Award

Young Researcher Award

Appikatla Phani Kumar
Affiliation KL University
Country India
Scopus ID 57872539900
Documents 14
Citations 77
h-index 7
Subject Area Electronics
Event International Research Awards
ORCID 0000-0002-8150-6403

Appikatla Phani Kumar is an electronics researcher affiliated with KL University, India. The Young Researcher Award recognizes researchers whose academic work demonstrates sustained engagement with research, scholarly communication, and contributions within their discipline. Kumar’s research profile records 14 documents, 77 citations, and an h-index of 7 in Scopus, providing bibliometric indicators of his published research activity. [1]

Abstract

Appikatla Phani Kumar is an electronics researcher affiliated with KL University, India. His scholarly profile is represented by research publications indexed in Scopus, with 14 documents, 77 citations, and an h-index of 7. These indicators provide a bibliometric overview of his research activity and scholarly visibility. His work is situated within the field of Electronics, a discipline encompassing electronic systems, devices, circuits, signal processing, communication technologies, and related engineering applications. The Young Researcher Award provides recognition of emerging academic researchers whose documented research activity demonstrates continued engagement with scholarly development and contribution to their field.[1]

Keywords

Appikatla Phani Kumar, Young Researcher Award, Electronics, electronic engineering, research publications, Scopus, scholarly impact, KL University, research activity, International Research Awards.[1]

Introduction

Electronics is a broad engineering and scientific field concerned with the development, analysis, control, and application of electronic devices and systems. Research in the discipline contributes to areas such as semiconductor technologies, embedded systems, communication, instrumentation, control, signal processing, and intelligent electronic applications. Within this context, academic researchers contribute through original investigations, scholarly publications, experimentation, and the development or evaluation of technologies.[2]

Research Profile

The research profile of Appikatla Phani Kumar is situated within Electronics and is documented through an author record in the Scopus bibliographic database. The available profile identifies 14 documents and 77 citations, while the reported h-index is 7. [1] These measures are commonly used to describe aspects of scholarly publication and citation activity, although bibliometric indicators should be interpreted alongside the quality, relevance, originality, and practical significance of individual research contributions. [2]

Research Contributions

Research contributions in Electronics may involve theoretical analysis, device and circuit development, system design, computational modelling, experimentation, measurement, or the application of electronic technologies to engineering problems. Kumar’s documented publication activity places his academic work within this wider research environment. The available bibliometric record establishes the existence of a sustained scholarly publication profile but does not, by itself, determine the specific scientific significance of each individual contribution. [1]

Publications

The Scopus author profile associated with Appikatla Phani Kumar records 14 indexed documents. [1] These publications form the documented bibliographic basis for evaluating the researcher’s academic output. Publication records may include research articles, conference papers, reviews, or other indexed scholarly documents, depending on the source database classification.

Research Impact

The available Scopus metrics indicate 77 citations and an h-index of 7 for the researcher’s indexed record. [1] Citations can provide one quantitative indication that published research has been referenced by subsequent scholarly literature. However, citation counts can vary over time and across databases, disciplines, publication types, and indexing practices, and therefore represent one component of a broader assessment of research impact.

Award Suitability

The Young Researcher Award is intended to recognize researchers at an early stage of their academic development who demonstrate documented research activity and scholarly engagement. Appikatla Phani Kumar’s affiliation with KL University, research specialization in Electronics, and indexed record of 14 documents, 77 citations, and an h-index of 7 provide objective indicators of ongoing academic research activity. [1]

Conclusion

Appikatla Phani Kumar is an Electronics researcher affiliated with KL University, India, whose scholarly profile is represented in Scopus by 14 documents, 77 citations, and an h-index of 7. [1] These indicators document a measurable record of research publication and citation activity. Considered together with the researcher’s persistent ORCID identification and academic affiliation, the profile provides a structured basis for scholarly recognition within the context of the Young Researcher Award.

References

    1. Elsevier. (n.d.). Scopus author details: Appikatla Phani Kumar, Author ID 57872539900. Scopus.
      https://www.scopus.com/authid/detail.uri?authorId=57872539900
    2. ORCID. (n.d.). Appikatla Phani Kumar – ORCID record. ORCID.
      https://orcid.org/0000-0002-8150-6403
    3. International Research Awards. (n.d.). International Research Awards.
      https://researchawards.net/
    4. Narouei, M., Elbarbary, A., Kumar, A. P., Abbasian, E., & Sachdeva, A. (2025). A low-power 9T SRAM with half-selection resilient in carbon nanotube field-effect transistor technology for battery-operated systems. Physica Scripta, 100(12), 125114.
      https://doi.org/10.1088/1402-4896/ae2897
    5. Kumar, A. P., Lorenzo, R., Abbasian, E., & Sachdeva, A. (2025). Schmitt trigger-based low leakage and half-select free near-threshold 10T SRAM architecture. Journal of Circuits, Systems and Computers, 34(15), 2550348. https://doi.org/10.1142/S0218126625503487

Abu Farzan Mitul | Engineering | Best Researcher Award

Dr. Abu Farzan Mitul | Engineering | Best Researcher Award

Leidos | United States

Dr. Abu Farzan Mitul is an accomplished researcher and educator specializing in opto-electronic device fabrication, fiber optic sensing technologies, and nanostructured thin-film materials. His research bridges the intersection of photonics, materials science, and advanced sensing systems — contributing to innovations that enhance environmental monitoring, industrial automation, and biomedical diagnostics. Dr. Mitul earned his Ph.D. in Electrical and Computer Engineering from the University of Texas at El Paso (UTEP), USA, where he designed and developed advanced fiber Bragg grating sensors and thin-film photonic devices for multi-parameter sensing applications. His earlier academic training includes a B.Sc. and M.Sc. in Applied Physics, Electronics, and Communication Engineering from the University of Dhaka, Bangladesh. Throughout his career, Dr. Mitul has collaborated with leading U.S. research institutions and agencies, including the Department of Energy (DOE), Department of Defense (DoD), and NASA, focusing on next-generation optoelectronic and energy-efficient sensing systems. His extensive publication record spans high-impact journals and international conferences in photonics, sensor technology, and materials characterization. In addition to his research, Dr. Mitul has served as a faculty member and laboratory instructor, mentoring undergraduate and graduate students in electronics, photonics, and experimental physics. He is passionate about advancing interdisciplinary research in fiber optic sensing, MEMS/NEMS devices, photonic integrated systems, and nanotechnology-driven device engineering. Dr. Mitul continues to explore innovative pathways toward miniaturized, high-sensitivity photonic systems with applications across environmental, aerospace, and biomedical fields — aligning cutting-edge materials research with sustainable technological development.

Profiles: Orcid | Google Scholar | Linkedin

Featured Publications

Adhikari, N., Dubey, A., Khatiwada, D., Mitul, A. F., Wang, Q., Venkatesan, S., & Qiao, Q. (2015). Interfacial study to suppress charge carrier recombination for high efficiency perovskite solar cells. ACS Applied Materials & Interfaces, 7(48), 26445–26454. https://doi.org/10.1021/acsami.5b08343

Rana, G. M. S. M., Khan, A. A. M., Hoque, M. N., & Mitul, A. F. (2013, December). Design and implementation of a GSM based remote home security and appliance control system. In 2013 2nd International Conference on Advances in Electrical Engineering (ICAEE) (pp. 291–295). IEEE. https://doi.org/10.1109/ICAEE.2013.6750340

Khatiwada, D., Venkatesan, S., Adhikari, N., Dubey, A., Mitul, A. F., Mohammad, L., … & Qiao, Q. (2015). Efficient perovskite solar cells by temperature control in single and mixed halide precursor solutions and films. The Journal of Physical Chemistry C, 119(46), 25747–25753. https://doi.org/10.1021/acs.jpcc.5b08667

Mitul, A. F., Mohammad, L., Venkatesan, S., Adhikari, N., Sigdel, S., Wang, Q., … & Qiao, Q. (2015). Low temperature efficient interconnecting layer for tandem polymer solar cells. Nano Energy, 11, 56–63. https://doi.org/10.1016/j.nanoen.2014.10.030

Venkatesan, S., Ngo, E. C., Chen, Q., Dubey, A., Mohammad, L., Adhikari, N., … & Qiao, Q. (2014). Benzothiadiazole-based polymer for single and double junction solar cells with high open circuit voltage. Nanoscale, 6(12), 7093–7100. https://doi.org/10.1039/C4NR00606H

Islam, M. M., Rafi, F. H. M., Mitul, A. F., Ahmad, M., Rashid, M. A., & Malek, M. F. B. A. (2012, May). Development of a noninvasive continuous blood pressure measurement and monitoring system. In 2012 International Conference on Informatics, Electronics & Vision (ICIEV) (pp. 695–699). IEEE. https://doi.org/10.1109/ICIEV.2012.6317425