lhtisham ul haq | Mathematical Physics | Best Researcher Award

Dr. lhtisham ul haq | Mathematical Physics | Best Researcher Award

Student at University of Science and Technology China, China

Dr. Ihtisham Ulhaq is an emerging physicist and sustainability innovator πŸŒ±πŸ”¬, currently advancing his Ph.D. at the University of Science and Technology of China πŸ‡¨πŸ‡³. With a robust foundation in materials science and renewable energy, his pioneering research on lead-free perovskite solar cells ⚑ and spectrally split agrivoltaic systems 🌞🌾 is shaping eco-friendly energy solutions with global relevance. Dr. Ulhaq has authored 12 peer-reviewed publications πŸ“šβ€”five as the lead authorβ€”across high-impact Q1/Q2 journals, showcasing his scientific rigor and thought leadership. His multidisciplinary collaborations across China, Saudi Arabia, and Pakistan foster cutting-edge innovation in nanomaterials, photovoltaics, and sustainable agriculture 🀝🌍. With hands-on expertise in MOCVD, thin-film deposition, and doping strategies, he is bridging theoretical insights with scalable applications. Passionate, visionary, and globally connected, Dr. Ulhaq is driving transformative change in the fields of clean energy and agritech, embodying the spirit of next-generation research excellence πŸŒπŸ†.

Professional Profile

Google Scholar
ORCID Profile

Education πŸŽ“πŸ“š

Dr. Ihtisham Ulhaq’s academic journey reflects a deep commitment to the frontiers of physics and sustainable technologies. He earned his M.Phil. in Physics from the University of Lahore πŸ‡΅πŸ‡°, where he laid the groundwork for his specialization in energy materials. Currently pursuing his Ph.D. at the prestigious University of Science and Technology of China πŸ‡¨πŸ‡³, Dr. Ulhaq focuses on renewable energy and advanced materials research. His educational background is anchored in strong theoretical physics, coupled with a practical mastery of experimental tools such as thin-film deposition, nanostructuring, and semiconductor engineering πŸ”¬. With a curriculum steeped in interdisciplinary learning and international exposure, he has cultivated the analytical and innovative skill set required to solve global energy and environmental challenges 🌍. His academic excellence has been consistently demonstrated through scholarly achievements, publication output, and research-led learning, laying a solid foundation for a promising career in advanced scientific innovation 🌟.

Professional Experience πŸ§ͺ🏒

Though still early in his career, Dr. Ihtisham Ulhaq has amassed significant professional experience through intensive academic research and collaborative projects. As a doctoral researcher at the University of Science and Technology of China, he has spearheaded studies in photovoltaics, nanomaterials, and solar cell optimization β˜€οΈ. He has independently led and co-led three major research initiatives, including the design of a spectrally split agrivoltaic system combined with container farming πŸŒΏπŸ—οΈβ€”a novel concept integrating agriculture and energy efficiency. His work environment emphasizes international collaboration, where he has actively engaged with research partners across China, Saudi Arabia, and Pakistan 🀝. His hands-on experience in laboratory techniques such as MOCVD, doping analysis, and electron transport layer enhancement equips him with a comprehensive skill set ideal for next-gen green technologies πŸ’‘. Dr. Ulhaq’s professional path is defined by rigorous experimentation, innovation-oriented thinking, and a mission to translate science into sustainable global solutions 🌐.

Research Interest πŸ”βš‘

Dr. Ihtisham Ulhaq’s research passion lies at the intersection of clean energy, nanotechnology, and sustainable agriculture. He specializes in developing lead-free perovskite solar cells, aiming to improve their stability, efficiency, and environmental safety πŸŒžβ™»οΈ. His interest extends to agrivoltaics, where he designs hybrid systems combining renewable energy generation with agricultural productivityβ€”an area where he proposed a unique spectrally split system for container farming πŸŒΎπŸ’§. His scientific curiosity drives explorations in bandgap engineering, doping strategies, and interface tailoring to enhance energy material performance at the nanoscale. He is equally intrigued by the optical and magnetic properties of functional thin films, especially ferrite-based materials with communication applications πŸ“‘. With a vision to create integrated, eco-friendly technologies, Dr. Ulhaq’s research is highly interdisciplinary and aligned with sustainable development goals 🧭. He is deeply committed to transforming lab-scale discoveries into scalable, real-world solutions that contribute to a greener and more resilient future πŸŒπŸ”‹.

Awards and Honors πŸ†πŸŽ–οΈ

While still in the formative years of his research career, Dr. Ihtisham Ulhaq’s accomplishments have earned him increasing recognition in academic circles 🌟. His 12 peer-reviewed journal publications, five of which he authored as the primary investigator, have appeared in reputable Q1/Q2 scientific journalsβ€”a significant feat in competitive research domains πŸ“˜πŸ§ . His work on lead-free perovskite solar cells and agrivoltaic systems has garnered attention for its originality and relevance to sustainable innovation πŸŒ±πŸ”¬. While he is actively being considered for prominent awards such as the Best Researcher Award, his contributions are already making ripples within the scientific community through impactful research and global collaboration 🌐. As a rising researcher, he is paving the way for future distinctions, honors, and fellowships tied to innovation, green energy, and interdisciplinary science. These early milestones reflect a trajectory of excellence, driven by purpose, persistence, and a profound scientific vision 🧭.

Conclusion βœ¨πŸ“ˆ

Dr. Ihtisham Ulhaq exemplifies the spirit of the modern researcher: globally engaged, scientifically rigorous, and deeply committed to sustainability. Through his pioneering work in clean energyβ€”particularly in lead-free perovskite solar cells and agrivoltaic system integrationβ€”he is addressing some of the most urgent challenges of our time 🌍⚑. His multidisciplinary expertise, spanning materials science, physics, nanotechnology, and agriculture, positions him as a key innovator in eco-technology and renewable solutions πŸ”„πŸŒΏ. With a growing publication record, dynamic collaborations, and a proactive approach to scientific inquiry, Dr. Ulhaq is not only building a distinguished academic profile but also laying the groundwork for real-world impact πŸ—οΈπŸ“Š. As he continues to expand his research, leadership, and outreach, his trajectory promises contributions that will resonate globally. In every dimensionβ€”academic, practical, and visionaryβ€”Dr. Ulhaq embodies the values deserving of recognition through the Best Researcher Award πŸ….

Publications Top Notes

πŸ”¬ Title: Impact of molybdenum doping on the optoelectronic and structural properties of CsPbIBrβ‚‚ perovskite solar cell
πŸ‘¨β€πŸ”¬ Authors: MI Khan, A Mujtaba, S Hussain, M Atif, AI Qureshi, W Shahid, A Ali
πŸ“… Year: 2024
πŸ“ˆ Citations: 29
πŸ“š Source: Physica B: Condensed Matter, Volume 678, Article 415758


πŸ”¬ Title: Bandgap reduction and efficiency enhancement in Csβ‚‚AgBiBr₆ double perovskite solar cells through gallium substitution
πŸ‘¨β€πŸ”¬ Authors: MI Khan, A Ullah, A Mujtaba, BS Almutairi, W Shahid, A Ali, JR Choi
πŸ“… Year: 2024
πŸ“ˆ Citations: 24
πŸ“š Source: RSC Advances, Volume 14 (8), Pages 5440–5448


πŸ”¬ Title: Influence of gallium on structural, optical and magnetic properties of Bi-YIG thin films
πŸ‘¨β€πŸ”¬ Authors: MS Hasan, MI Khan, SS Ali, A Brahmia
πŸ“… Year: 2024
πŸ“ˆ Citations: 10
πŸ“š Source: Materials Science and Engineering: B, Volume 301, Article 117180


πŸ”¬ Title: Bandgap Engineering and Enhancing Optoelectronic Performance of a Lead-Free Double Perovskite Csβ‚‚AgBiBr₆ Solar Cell via Al Doping
πŸ‘¨β€πŸ”¬ Authors: A Ullah, M Iftikhar Khan, Ihtisham-ul-haq, BS Almutairi, DB N. AlResheedi, et al.
πŸ“… Year: 2024
πŸ“ˆ Citations: 9
πŸ“š Source: ACS Omega, Volume 9 (16), Pages 18202–18211


πŸ”¬ Title: Trans-polyacetylene doped Csβ‚‚AgBiBr₆: Band gap reduction for high-efficiency lead-free double perovskite solar cells
πŸ‘¨β€πŸ”¬ Authors: A Ullah, MI Khan, BS Almutairi, A Laref, A Dahshan
πŸ“… Year: 2024
πŸ“ˆ Citations: 4
πŸ“š Source: Results in Physics, Volume 60, Article 107654


πŸ”¬ Title: A novel heterostructure of Cr-doped TiOβ‚‚ for reducing the recombination rate of dye sensitized solar cells
πŸ‘¨β€πŸ”¬ Authors: MI Yasin, MI Khan, S Kanwal, DBN ALResheedi, M Fatima, N Alwadai, et al.
πŸ“… Year: 2024
πŸ“ˆ Citations: 3
πŸ“š Source: Journal of the Korean Ceramic Society, Volume 61 (4), Pages 569–580


πŸ”¬ Title: Improving Csβ‚‚AgBiBr₆ double perovskite solar cells through graphdiyne doping: A Stride towards enhanced performance
πŸ‘¨β€πŸ”¬ Authors: S Umer, MI Khan, A Ullah, M Asad, W Mnif, Z Algarni, MI Saleem
πŸ“… Year: 2024
πŸ“ˆ Citations: 2
πŸ“š Source: Optical Materials, Volume 156, Article 115896


πŸ”¬ Title: Roadmap to 2D Graphene Nanomaterials-Based Biosensors for Early Cancer Detection
πŸ‘¨β€πŸ”¬ Authors: JWLHIUHMA Khan
πŸ“… Year: 2025
πŸ“ˆ Citations: 1
πŸ“š Source: Plasmonics


πŸ”¬ Title: Enhancing efficiency in double perovskite solar cells through bandgap reduction via organic polymer doping
πŸ‘¨β€πŸ”¬ Authors: MI Khan, A Mujtaba, A Ullah, B Ali, M Atif, MS Hasan
πŸ“… Year: 2025
πŸ“ˆ Citations: 1
πŸ“š Source: Results in Chemistry, Volume 13, Article 101999


πŸ”¬ Title: Enhancing the Efficiency and Stability of Csβ‚‚AgBiBr₆ Solar Cells via MAPbBr₃ Decoration
πŸ‘¨β€πŸ”¬ Authors: MI Khan, M Li, OAA Ali, SF Mahmoud
πŸ“… Year: 2025
πŸ“š Source: Materials Research Bulletin, Article 113501


πŸ”¬ Title: Enhancing efficiency of Csβ‚‚AgBiBr₆ double perovskite solar cells through bandgap reduction by molybdenum doping
πŸ‘¨β€πŸ”¬ Authors: IMIKLBFHERP Patil
πŸ“… Year: 2025
πŸ“š Source: Journal of the Korean Ceramic Society


πŸ”¬ Title: Enhancing solar cell efficiency: lead-free double perovskite solar cells Csβ‚‚AgBiBr₆ with magnesium-doped and Znβ‚‚SnOβ‚„ electron transport layer
πŸ‘¨β€πŸ”¬ Authors: MI Khan, Lamia Ben Farhat
πŸ“… Year: 2024
πŸ“š Source: Journal of Sol-Gel Science and Technology, Volume 112 (2), Pages 468–479