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pro vyhledávání: '"Katla Sai Krishna"'
Publikováno v:
In Cell Reports Physical Science 19 April 2023 4(4)
Akademický článek
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Autor:
Ahsan, Md. Ariful, Islam, Md. Tariqul, Hernandez, Cesar, Castro, Edison, Katla, Sai Krishna, Kim, Hoejin, Lin, Yirong, Curry, Michael L., Gardea-Torresdey, Jorge, Noveron, Juan C.
Publikováno v:
In Journal of Environmental Chemical Engineering August 2018 6(4):4329-4338
Autor:
Padilla, Julio E., Melendez, Joshua, Barrera, Luis A., Wu, Yanyu, Ventura, Karen, Veleta, Jose M., Islam, Md. Tariqul, Chavez, Carmen A., Katla, Sai Krishna, Villagrán, Dino, Noveron, Juan C.
Publikováno v:
In Journal of Environmental Chemical Engineering February 2018 6(1):1027-1032
Publikováno v:
Communications Chemistry. 2/26/2021, Vol. 4 Issue 1, p1-11. 11p.
Publikováno v:
View (2688-268X); Apr2023, Vol. 4 Issue 2, p1-6, 6p
Publikováno v:
In Journal of Photochemistry & Photobiology, A: Chemistry 1 February 2021 406
Autor:
Katla Sai Krishna, Andrew Pardo, Tariqul Islam, Huiyao Wang, Paulette Ramirez, Juan C. Noveron, Homero Garcia, Miguel Angel Carrillo‐Alvarado, Noemi Dominguez
Publikováno v:
Environmental Technology & Innovation. 11:321-327
Here we demonstrate the highly efficient adsorption and degradation of Methylene Blue and the antibiotics Tetracycline, Ofloxacin, and Ciprofloxacin using a TiO 2 -hydrogel nanocomposite that exhibits photocatalytic properties. The nanocomposite is s
Autor:
Muthusamy Eswaramoorthy, Srinivasan Sampath, Katla Sai Krishna, Dheeraj Kumar Singh, S. Harish
Publikováno v:
Angewandte Chemie International Edition. 55:2032-2036
An innovative technique to obtain high-surface-area mesostructured carbon (2545 m(2) g(-1)) with significant microporosity uses Teflon as the silica template removal agent. This method not only shortens synthesis time by combining silica removal and
Autor:
Tomohiro Shibata, Katla Sai Krishna, G. Lisa Bovenkamp-Langlois, Challa S. S. R. Kumar, Yaroslav Losovyj, J.T. Miller, Chelliah V. Navin, Varshni Singh, Soma Chattopadhyay, Chandra S. Theegala
Publikováno v:
Chemical Engineering Journal. 281:81-86
A continuous flow process for production of water-soluble Platinum-Dimercaptosuccinic acid (Pt(DMSA)) nanoparticles at ambient conditions using millifluidics is demonstrated. The process development was supported by in-situ synchrotron radiation-base