Narendra Kurra
Affiliations: | 2019-2020 | Drexel University, Philadelphia, PA, United States | |
2020-2021 | IISER Thiruvananthapuram | ||
2021- | IIT Hyderabad |
Area:
ElectrochemistryWebsite:
https://kurranarendra.wixsite.com/echem/homeGoogle:
"Narendra Kurra"Cross-listing: E-Tree - BME Tree
Parents
Sign in to add mentorAnunay Samanta | research assistant | 2006-2008 | University of Hyderabad | |
(M.Sc. Investigations on Optical Properties of Room Temerature Ionic Liquids.) | ||||
Giridhar U. Kulkarni | grad student | 2008-2013 | JNCASR | |
(Ph.D. 2D Nanocarbons: Function aspects and Device Fabrication.) | ||||
Husam N. Alshareef | post-doc | 2013-2015 | KAUST (E-Tree) | |
Yury Gogotsi | post-doc | 2015-2019 | Drexel (E-Tree) | |
Timothy S. Fisher | research scientist | 2010-2010 | Purdue (E-Tree) | |
Ronald Reifenberger | research scientist | 2010-2010 | Purdue (Physics Tree) |
Children
Sign in to add traineeSuman Yadav | grad student | 2021- | IIT Hyderabad |
Sneha Joseph | grad student | 2022- | IIT Hyderabad |
Shubham Bhoi | grad student | 2023- | IIT Hyderabad |
Rituprava Dash | grad student | 2023- | IIT Hyderabad |
Priyaranjan Sahoo | grad student | 2023- | IIT Hyderabad |
Danish Wazir | grad student | 2023- | IIT Hyderabad |
Nikhita Srinivasan | grad student | 2020-2021 | IISER Thiruvananthapuram |
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Publications
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Goudar SH, Bhoi S, Sahoo SK, et al. (2024) Supramolecular Engineering of Ti C T MXene -Perylene Diimide Hybrid Electrodes for the Pseudocapacitive Electrochemical Storage of Calcium Ions. Small (Weinheim An Der Bergstrasse, Germany). e2309905 |
Karmakar K, Sarkar P, Sultana J, et al. (2021) Layer-by-Layer Assembly-Based Heterointerfaces for Modulating the Electronic Properties of TiCT MXene. Acs Applied Materials & Interfaces. 13: 59104-59114 |
Saini H, Srinivasan N, Šedajová V, et al. (2021) Emerging MXene@Metal-Organic Framework Hybrids: Design Strategies toward Versatile Applications. Acs Nano |
Kurra N, Uzun S, Valurouthu G, et al. (2021) Mapping (Pseudo)Capacitive Charge Storage Dynamics in Titanium Carbide MXene Electrodes in Aqueous Electrolytes Using 3D Bode Analysis Energy Storage Materials. 39: 347-353 |
Valurouthu G, Maleski K, Kurra N, et al. (2020) Tunable electrochromic behavior of titanium-based MXenes. Nanoscale. 12: 14204-14212 |
Anayee M, Kurra N, Alhabeb M, et al. (2020) Role of acid mixtures etching on the surface chemistry and sodium ion storage in TiCT MXene. Chemical Communications (Cambridge, England) |
Al-Temimy A, Anasori B, Mazzio KA, et al. (2020) Enhancement of Ti3C2 MXene Pseudocapacitance after Urea Intercalation Studied by Soft X-ray Absorption Spectroscopy The Journal of Physical Chemistry C. 124: 5079-5086 |
Buczek S, Barsoum ML, Uzun S, et al. (2020) Rational Design of Titanium Carbide MXene Electrode Architectures for Hybrid Capacitive Deionization Energy & Environmental Materials. 3: 398-404 |
Tang J, Mathis T, Kurra N, et al. (2019) Tuning the Electrochemical Performance of Titanium Carbide MXene by Controllable in situ Anodic Oxidation. Angewandte Chemie (International Ed. in English) |
Seredych M, Shuck CE, Pinto D, et al. (2019) High-Temperature Behavior and Surface Chemistry of Carbide MXenes Studied by Thermal Analysis Chemistry of Materials. 31: 3324-3332 |