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RSC Advances|May 11, 2022
Core-shell microspheres for the ultrafast degradation of estrogen hormone at neutral pHKatherine Villa, Jemish Parmar, Diana Vilela, et al.ACS Applied Materials & Interfaces|May 31, 2018
Metal-Oxide-Based Microjets for the Simultaneous Removal of Organic Pollutants and Heavy MetalsKatherine Villa, Jemish Parmar, Diana Vilela, et al.Nano Letters|March 22, 2016
Graphene-Based Microbots for Toxic Heavy Metal Removal and Recovery from WaterDiana Vilela, Jemish Parmar, Yongfei Zeng, et al.ACS Applied Materials & Interfaces|June 13, 2017
Microbots Decorated with Silver Nanoparticles Kill Bacteria in Aqueous MediaDiana Vilela, Morgan M Stanton, Jemish Parmar, et al.Journal of the American Chemical Society|July 5, 2018
Micro- and Nanomotors as Active Environmental Microcleaners and SensorsJemish Parmar, Diana Vilela, Katherine Villa, et al.Lab on a Chip|April 23, 2015
Nano-photocatalysts in microfluidics, energy conversion and environmental applicationsJemish Parmar, Seungwook Jang, Lluís Soler, et al.Small (Weinheim an Der Bergstrasse, Germany)|May 2, 2022
Micromotor-in-Sponge Platform for Multicycle Large-Volume Degradation of Organic PollutantsDiana Vilela, Maria Guix, Jemish Parmar, et al.ACS Nano|January 24, 2018
Medical Imaging for the Tracking of MicromotorsDiana Vilela, Unai Cossío, Jemish Parmar, et al.ACS Applied Materials & Interfaces|September 12, 2015
Mobility-Enhancing Coatings for Vitreoretinal Surgical Devices: Hydrophilic and Enzymatic Coatings Investigated by MicrorheologyJuho Pokki, Jemish Parmar, Olgaç Ergeneman, et al.Science and Technology of Advanced Materials|November 24, 2016
Nano and micro architectures for self-propelled motorsJemish Parmar, Xing Ma, Jaideep Katuri, et al.Pageof 1