Dr. Sehrish Sarfaraz | Computational Chemistry | Best Scholar Award
PhD scholar at COMSATS university Islamabad abbottabad campus , Pakistan.
Dr. Sehrish Sarfaraz ๐ is a dedicated computational chemist ๐งช and lecturer ๐ฉโ๐ซ at the Higher Education Department, KP, Pakistan. With a Ph.D. in Chemistry from COMSATS University Islamabad ๐๏ธ, her research delves into advanced areas like single atom catalysis, hydrogen evolution reaction, and drug delivery systems ๐. She has authored impactful publications ๐ in high-impact journals and actively contributes to scientific symposiums ๐. Dr. Sarfaraz excels in using computational tools to explore nanostructures and catalytic mechanisms ๐ปโ๏ธ. Her passion for innovation and education is evident in her teaching, community involvement, and interdisciplinary collaborations ๐ค.
PROFILEย
๐ Summary of Suitability:
Dr. Sehrish Sarfaraz exemplifies academic excellence, interdisciplinary innovation, and impactful research in the field of computational chemistry and nanomaterials. She has pursued and nearly completed a Ph.D. with a research focus on single atom catalysis, hydrogen evolution reactions, and drug delivery systems. Her strong publication recordโover 16 peer-reviewed papers with a cumulative impact factor of 251โreflects her significant scholarly contributions. With 12 first-author publications, an h-index of 13, and frequent recognition in scientific conferences, she demonstrates both productivity and thought leadership in her field. She is also actively engaged in scientific events, workshops, and community outreach, contributing to knowledge dissemination and professional growth.
๐น Education & Experienceย
๐ Education:
-
๐ Ph.D. in Chemistry (2021โ2024) โ COMSATS University Islamabad, Abbottabad
-
๐ M.Sc. in Chemistry (2018โ2020) โ COMSATS University Islamabad, Abbottabad
-
๐ B.Sc. in Chemistry (2013โ2017) โ Hazara University Mansehra
๐ผ Experience:
-
๐ฉโ๐ซ Lecturer in Chemistry (2023โPresent) โ Higher Education Department, KP
-
๐ฌ Ph.D. Researcher โ COMSATS University Islamabad, Abbottabad (Computational Chemistry Group)
-
๐งช M.Sc. Researcher โ IRCBM, Lahore Campus (Bone Repair & Regeneration)
Professional Development ๐๐
Dr. Sehrish Sarfaraz has shown unwavering commitment to professional growth ๐. She has participated in numerous international conferences ๐ฃ๏ธ and symposiums, where she presented her innovative research in catalysis and biomedical materials ๐งฌ. Her dedication extends to workshops in machine learning ๐ง , computational biology ๐ฌ, and energy materials โก. These experiences have honed her communication, research, and digital skills ๐ก. From mastering advanced DFT tools like Gaussian and VASP ๐ป to gaining hands-on experience with analytical techniques like SEM, FTIR, and UV-Vis spectroscopy ๐, she continuously pushes the boundaries of scientific excellence ๐.
Research Focus ๐๐ค
Dr. Sarfarazโs research is deeply rooted in computational chemistry ๐งช๐ป, especially focused on density functional theory (DFT) to study single atom catalysis (SACs), hydrogen evolution reactions (HER), and nanostructured materials โ๏ธ. She explores the electronic properties, stability, and reactivity of metal-doped fullerenes and nanocages for green energy applications ๐. Her work also intersects with drug delivery, nonlinear optical materials, and environmental sensing ๐. By simulating complex molecular systems, she contributes to a deeper understanding of catalytic mechanisms and energy-efficient materials ๐ฟ๐ฌ. Her interdisciplinary approach bridges chemistry, materials science, and biomedical engineering ๐ค.
Awards and Honors ๐๐๏ธ
๐ Awards & Recognitions:
-
๐ฅ Best Oral Presenter Award โ 16th International Symposium on Advanced Materials (ISAM), 2019
-
๐ฅ Best Poster Presentation Shield โ 7th International Symposium on Biomedical Materials (ISBM), 2019
-
๐ Multiple Certificates โ Participation in workshops on Machine Learning, Computational Biology, Energy Materials, and more
Publications & Citations ๐
-
DFT investigation of adsorption of nitro-explosives over C2N surface โ 53 citations, 2022 ๐ฌ๐ฃ
-
Computational investigation of a covalent triazine framework (CTF-0) as an electrochemical sensor โ 41 citations, 2022 โ๏ธ๐
-
CTF-0 surface for detection of CWAs and industrial pollutants โ 33 citations, 2022 โข๏ธ๐ญ
-
Efficient detection of nerve agents via carbon nitride quantum dots โ 31 citations, 2023 ๐งช๐ง
-
Imidazolium ionic liquids with carbon nitride electrodes in supercapacitors โ 31 citations, 2023 โก๐งซ
-
Single Atom Catalyst (Fe, Co, Ni) on C2N for Hโ dissociation โ 23 citations, 2022 โ๏ธ๐งฏ
-
Enhanced NLO response of calix[4]pyrrole-based earthides under EEF โ 22 citations, 2022 ๐ก๐
-
Metallofullerene (M@C60) for hydrogen evolution reaction โ 20 citations, 2024 ๐๐
-
Hโ dissociation on TM-doped C24 nanocage SACs โ 19 citations, 2023 ๐ฉ๐งฌ
-
Functionalized SWCNT with sulfide ions: DFT study โ 16 citations, 2022 ๐งตโ๏ธ
-
TM-Doped C20 Fullerene SACs for Hโ dissociation โ 15 citations, 2023 ๐ง ๐ฌ
-
Cavitand nanocapsule for 5-FU drug delivery: DFT insights โ 14 citations, 2024 ๐๐ฆ
-
TM-doped C20 fullerene for HER electrocatalysis โ 14 citations, 2023 ๐งช๐ฅ
-
Supramolecular reduction of nitro compounds in cucurbit[7]uril โ 14 citations, 2023 ๐ง๐ป
-
36Adz-based alkaline earthides with NLO response โ 14 citations, 2023 ๐ ๐ก
-
TM-doped C24 electrocatalysts for HER: Thermodynamics/Kinetics โ 13 citations, 2023 โ๏ธโฑ๏ธ
-
Catalysis in porous organic cage CC2: Transformation/inhibition โ 13 citations, 2022 ๐งด๐ง
-
Ionic liquids interaction with porous vs non-porous electrodes โ 12 citations, 2023 ๐งโ๏ธ
-
Thiourea analogues as ฮฒ-glucuronidase inhibitors + docking โ 12 citations, 2022 ๐งฌ๐งซ
-
15-crown-5 ether earthides with NLO response โ 11 citations, 2022 ๐๐
๐ Conclusion:
In conclusion, Dr. Sehrish Sarfaraz not only meets but exceeds the criteria for the Best Scholar Award ๐. Her research contributions have direct implications for global challenges in energy sustainability, health care, and environmental protection ๐. With an outstanding blend of academic rigor, innovation, and professional integrity, she is a prime candidate to receive recognition for her scholarly excellence and future potential.