
Kshama Gupta
Cornell University · Biomedical Engineering
Active 1978–2026
Academic metrics are sourced from OpenAlex and public funding records; values may differ from Google Scholar.
About
Kshama Gupta is a Principal Research Scientist at the Van Vliet Lab within the Meinig School of Biomedical Engineering at Cornell University. The page indicates her role as a key member of the collaborative and dynamic community at Duffield Engineering, which is known for excellence in education, groundbreaking research, and technological innovation impacting communities and the world. Her research focus, background, and key contributions are not detailed explicitly on the page, but her position suggests involvement in advanced biomedical engineering research and collaboration within the engineering community at Cornell.
Research topics
- Materials science
- Chemistry
- Chemical engineering
- Crystallography
- Composite material
Selected publications
CCDC 2114116: Experimental Crystal Structure Determination
The Cambridge Structural Database · 2021-12-18
datasetOpen accessSenior authorRePEc: Research Papers in Economics · 2020-06-18
articleAbstract It is highly desirable to reduce the membrane thickness in order to maximize the throughput and break the trade-off limitation for membrane-based gas separation. Two-dimensional membranes composed of atomic-thick graphene or graphene oxide nanosheets have gas transport pathways that are at least three orders of magnitude higher than the membrane thickness, leading to reduced gas permeation flux and impaired separation throughput. Here we present nm-thick molecular sieving membranes comp…
Aqueous Separation in Metal-Organic Frameworks: From Experiments to Simulations
2018-10-25
book-chapter1st authorCorrespondingCurrent studies for metal-organic frameworks (MOFs) have been largely focused on gas storage and separation. This chapter briefly summarizes the recent experimental and simulation endeavors for aqueous separation in MOFs. The experiments are reported on the removal of cations, anions, and organics from aqueous solutions, while the simulations are discussed on water desalination, biofuel purification, and the separation of dimethyl sulfoxide, amino acids, and glucose from water.
Decomposition of CH<sub>4</sub> hydrate: effects of temperature and salt from molecular simulations
Figshare · 2018-01-01
datasetOpen accessWe report a molecular simulation study to investigate the decomposition of CH<sub>4</sub> hydrate. The decomposition is revealed to be stepwise from the outer to inner layers. Upon decomposition, the number of 5<sup>12</sup>6<sup>2</sup> cages drops faster than that of 5<sup>12</sup> cages. CH<sub>4</sub> molecules are released, dissolved in water, then enter gas phase; meanwhile, CH<sub>4</sub> bubbles may form particularly at a high temperature. Based on the variations of potential energy, ord…
Frequent coauthors
- 31 shared
Jianwen Jiang
National University of Singapore
- 15 shared
Pui Shan Chow
Agency for Science, Technology and Research
- 13 shared
Akshaya Jena
Museum of the Earth
- 10 shared
Srinivasulu Aitipamula
Agency for Science, Technology and Research
- 9 shared
Surajit Das
- 8 shared
Kang Zhang
- 8 shared
Sendhil K. Poornachary
Agency for Science, Technology and Research
- 6 shared
Parijat Kanaujia
Agency for Science, Technology and Research
Labs
Van Vliet LabPI
Education
- 2014
PhD, Chemical and Biomolecular Engineering
National University of Singapore
- 2009
B.Tech, Chemical Engineering
National Institute of Technology
Similar researchers at Cornell University
- Resume-aware match score
- Save to shortlist
- AI-drafted outreach
See your match with Kshama Gupta
PhdFit ranks faculty by your research interests, methods, and publications — grounded in their actual work, not templates.
- Free to start
- No credit card
- 30-second signup
