PUBLICATIONS
2024
2023
2022
53. [Book chapter] Narendra kurra*, Qiu jiang, Supercapacitors, Storing Energy 2E (with Special Reference to Renewable Energy Sources), Elsevier, 2022, 383-417
2021
51. Haneesh Saini, Nikitha Srinivasan, Veronika Šedajová, Mandira Majumder, Deepak P Dubal, Michal Otyepka, Radek Zbořil, Narendra Kurra,* Roland A. Fischerh* and Kolleboyina Jayaramulu*, "Emerging MXene@Metal-Organic Framework Hybrids: Design Strategies towards Versatile Applications", ACS Nano, 2021, doi.org/10.1021/acsnano.1c06402
(Post)doctoral Research
2020 - 2010
2019
43. Qiu Jiang, Narendra Kurra, Kathleen Maleski, Yongjiu Lei, Hanfeng Liang, Yizhou Zhang, Yury Gogotsi, and Husam N. Alshareef "On-chip MXene Microsupercapacitors for AC-line Filtering Applications" Advanced Energy Materials (I. F. 24.844), 2019, 9, 1901061.
42. Jianmin Li, Ariana Levitt, Narendra Kurra, Kevin Juan, Natalia Noriega, Xu Xiao, Xuehang Wang, Hongzhi Wang, Husam N Alshareef, Yury Gogotsi “MXene-conducting polymer electrochromic microsupercapacitors” Energy Storage Materials (I. F. 13.31), 2019, 20, 455.
41. Mykola Seredych, Christopher Eugene Shuck, David Pinto, Mohamed Alhabeb, Eliot Precetti, Grayson Deysher, Babak Anasori, Narendra Kurra, Yury Gogotsi, “High-“Temperature Behavior and Surface Chemistry of Carbide MXenes Studied by Thermal Analysis” Chemistry of Materials (I. F. 10.159), 2019, 31, 3324.
40. Narendra Kurra*, Qiu Jiang, Pranati Nayak, and H. N. Alshareef “Laser-Derived Graphene: A Three-Dimensional Printed Graphene Electrode and its Emerging Applications” Nano Today (I. F. 17.476), 2019, 24, 81-102.
39. J Li, Narendra Kurra, M Seredych, X Meng, H Wang, Y Gogotsi “Bipolar carbide-carbon high voltage aqueous lithium-ion capacitors” Nano Energy (I. F. 13.12), 2019, 56, 151.
38. Evan Quain, Tyler S. Mathis, Narendra Kurra, Kathleen Maleski, Katherine L. Van Aken, Mohamed Alhabeb, Husam N. Alshareef, and Yury Gogotsi “Direct Writing of Additive-Free MXene-in-Water for Electronics and Energy Storage” Advanced Material Technologies (I. F. 4.78), 2019, 4, 1800256.
2018
37. Narendra Kurra, M. Alhabeb, K. Maleski, C. -H. Wang, Husam N. Alshareef, and Yury Gogotsi “Bistacked Titanium Carbide (MXene) Anodes for Hybrid Sodium-Ion Capacitors” ACS Energy Letters, (I. F. 16.331), 2018, 3, 2094.
36. Pol Salles, Evan Quain, Narendra Kurra, Asia Sarycheva and Yury Gogotsi “Automated Scalpel Patterning of Solution Processed Thin Films for Fabrication of Transparent MXene Microsupercapacitors” Small, (I. F. 9.598), 2018, 14, 1802864.
35. Chueh-Han Wang, Narendra Kurra, Mohamed Alhabeb, Jeng-Kuei Chang, Husam N. Alshareef and Yury Gogotsi “Titanium Carbide (MXene) as Current Collector for Lithium-Ion Battery” ACS Omega, 2018, 3, 12489.
34. Fan Zhang, Eman Alhajji, Yongjiu Lei, Narendra Kurra*, and H. N. Alshareef, “Highly Doped 3D Graphene Na-ion Battery Anode by Laser Scribing Polyimide Films in Nitrogen Ambient”, Advanced Energy Materials (I. F. 24.844), 2018, 8, 1800353.
33. C. Couly, M. Alhabeb, K. L. Van Aken, Narendra Kurra, L. Gomes, A. M. Navarro-Suárez, Babak Anasori, Husam N. Alshareef, Yury Gogotsi “Asymmetric flexible MXene-reduced graphene oxide microsupercapacitor” Advanced Electronic Materials (I. F. 4.19), 2018, 4, 1700339.
32. Qiu Jiang, Narendra Kurra, Mohamed Alhabeb, Yury Gogotsi, and H. N. Alshareef, “All-Pseudocapacitive MXene-Ruthenium oxide Asymmetric Supercapacitors”, Advanced Energy Materials (I. F. 24.844), 2018, 8, 1703043.
2017
31. Pranati Nayak+, Qiu Jiang+, Narendra Kurra+, Xinbing Wang, Ulrich Buckner and H. N. Alshareef “Monolithic Laser Scribed Graphene Scaffold with Atomic Layer Deposited Platinum for Hydrogen Evolution Reaction” J. Mater. Chem. A (I. F. 9.93), 2017,5, 20422-20427.
30. Qiu Jiang, Narendra Kurra, Chuan Xia, and H. N. Alshareef “Hybrid Microsupercapacitors with Vertically-Scaled 3D Current Collectors Fabricated using a Simple Cut-and-Transfer Strategy” Advanced Energy Materials (I. F. 24.844), 2017, 7, 1601257.
2016
29. You-Yu Peng, Bilen Akuzum, Narendra Kurra, Meng-Qiang Zhao, Mohamed Alhabeb, Babak Anasori, Emin Caglan Kumbur, Husam N. Alshareef, Ming-Der Ger, Yury Gogotsi “All-MXene (Ti3C2Tx) Solid-State Microsupercapacitors for On-Chip Energy Storage” Energy & Environmental Science (I. F. 33.250), 2016, 9, 2847-2854.
28. Narendra Kurra, Bilal Ahmed, Yury Gogotsi, and H. N. Alshareef “MXene-on-Paper Co-Planar Microsupercapacitors” Advanced Energy Materials (I. F. 24.844), 2016, 6, 1601372.
27. Pranati Nayak, Narendra Kurra, Chuan Xia and H. N. Alshareef, “Highly Efficient Laser Scribed Graphene Electrodes for On-chip Electrochemical Sensing Applications” Advanced Electronic Materials (I. F. 4.19), 2016, 2, 1600185.
26. Narendra Kurra, Qiu Jiang, Ahad Syed, Chuan Xia and H. N. Alshareef “Frequency Response of Conducting Polymer Microsupercapacitors Matching that of Electrolytic Capacitors”, ACS Appl. Mater. Interfaces (I. F. 8.097), 2016, 8, 12748
25. Sarath Kumar+, Narendra Kurra+, and H. N. Alshareef “Enhanced high temperature thermoelectric response of sulphuric acid treated poly (3, 4-ethylenedioxythiophene): poly (4-styrenesulfonate) polymer thin films”, J. Mater. Chem. C (I. F. 5.976), 2016, 4, 215 [+ Equal contribution].
2015
24. Qiu Jiang+, Narendra Kurra+, and H. N. Alshareef “Marker Pen Lithography for Flexible and Curvilinear on-Chip Energy Storage”, Advanced Functional Materials (I. F. 13.325), 2015, 25, 4976. [+ Equal contribution].
23. Narendra Kurra, Qiu Jiang and H. N. Alshareef “A General Strategy for the Fabrication of High Performance Microsupercapacitors”, Nano Energy (I. F. 13.12), 2015, 16, 1.
22. Narendra Kurra, Chuan Xia and H. N. Alshareef “Ternary chalcogenide micro-pseudocapacitors for on-chip energy storage”, Chem Comm (I. F. 6.3), 2015, 51, 10494.
21. Narendra Kurra, M. K. Hota, and H. N. Alshareef “Conducting Polymer Micro-Supercapacitors for Flexible Energy Storage and Frequency Response” 2015, Nano Energy (I. F. 13.12), 13, 500.
20. Narendra Kurra, Ruiqi Wang, and H. N. Alshareef “All Conducting Polymer Electrodes for Asymmetric Flexible Solid-State Supercapacitors”, 2015, J. Mater. Chem. A (I. F. 9.93) 2015, 3, 7368.
19. Jihoon Park, Narendra Kurra, Mahmoud Almadhoun, Ihab Odeh and Husam N Alshareef “A Two-Step Annealing Process for Enhancing the Ferroelectric Properties of poly(vinylidene fluoride) (PVDF) Devices”, J. Mater. Chem. C (I. F. 5.976), 2015, 3, 2366.
18. Narendra Kurra, Nuha A. Alhebshi, and H. N. Alshareef “Microfabricated pseudocapacitors using Ni(OH)2 electrodes exhibit remarkable volumetric capacitance and energy density”, Advanced Energy Materials (I. F. 24.844), 2015, 4, 1401303.
2014
17. Narendra Kurra, Jihoon Park and H. N. Alshareef “A conducting polymer nucleation scheme for efficient solid-state supercapacitors on paper”, J. Mater. Chem. A (I. F. 9.93), 2014, 2, 17058-17065.
Doctoral Research
16. Narendra Kurra, S. Kiruthika, and G. U. Kulkarni “Solution processed sun baked electrodes for flexible supercapacitors” RSC Advances (I. F. 2.936), 2014, 4, 20281-20289.
15. Narendra Kurra, Ronald G Reifenberger and G. U. Kulkarni “Nanocarbon-SPM Synergy: Fundamental Aspects to Nanoscale Devices” ACS Applied Materials & Interfaces (I. F. 8.097), 2014, 6, 6147–6163.
14. U. Mogera, Narendra Kurra, R. Dhanya, Chandrabhas Narayana, and G. U. Kulkarni “Low cost, rapid synthesis of graphene on Ni: An efficient barrier for corrosion and thermal oxidation” Carbon (I. F. 7.082), 2014, 78, 384-391
13. T. Gowthami, Narendra Kurra, and G. Raina “Interaction and dynamics of ambient water adlayers on graphite probed using AFM voltage nanolithography and electrostatic force microscopy” Nanotechnology (I. F. 3.44), 2014, 25, 155304.
2013
12. Narendra Kurra* “Tunable Atomic force microscopy bias lithography on Electron beam induced carbonaceous platforms” AIP Advances (I. F. 1.56), 2013, 3, 092108.
11. Narendra Kurra and G. U. Kulkarni “Pencil-on-paper: Electronic devices”, Lab Chip (I. F. 6), 2013, 13, 2866-2873.10. Narendra Kurra, Dipanwita Dutta, and G. U. Kulkarni “Field effect transistors and RC filters from pencil-trace on paper” Physical Chemistry Chemical Physics (I. F. 4.12), 2013, 15, 8367
9. Narendra Kurra, Venkata Srinu Bhadram, Chandrabhas Narayana, and G. U. Kulkarni "Few layer graphene to graphitic films: Infrared photoconductive versus bolometric response” Nanoscale (I. F. 7.367) 2013, 5, 381.
2012
8. Narendra Kurra, Venkata Srinu Bhadram, Chandrabhas Narayana, and G. U. Kulkarni “Nanocrystalline graphene: Field effect transistors and Infrared photodetectors” Nanotechnology (I. F. 3.44) 2012, 23, 425301.
(Research highlight on this article appeared in Nanotech web 2012)
7. Narendra Kurra, Venkata Srinu Bhadram, Chandrabhas Narayana, and G. U. Kulkarni “Field-Effect Transistors Based on Thermally Treated Electron Beam-Induced Carbonaceous Patterns” ACS Applied Materials & Interfaces (I. F. 8.097) 2012, 4, 1030.
2011
6. Narendra Kurra, Abhay A. Sagade, and G. U. Kulkarni “Ultrafast Direct Ablative Patterning of HOPG by Single laser pulses to produce graphene ribbons” Advanced Functional Materials (I. F. 13.325) 2011, 21, 3836.
(Research highlights on this article appeared in Materials View, Nature India, 2011)
5. Narendra Kurra, Gyan Prakash, S Basavaraja, Timothy S Fisher, G. U. Kulkarni, and Ronald G Reifenberger “Charge storage in mesoscopic graphitic islands fabricated using AFM bias lithography” Nanotechnology (I. F. 3.44) 2011, 22, 245302.
(Research highlights on this article appeared in Nanotech Web and Nature India, 2011)
4. Narendra Kurra, T. Vijaykumar, and G. U. Kulkarni “CNT Manipulation: Inserting a Carbonaceous Dielectric Layer Beneath Using Electron Beam Induced Deposition” J. Nanosci. Nanotech. (I. F. 0.321) 2011, 11, 1025.
3. K. D. Mallikarjuna Rao, T. Bhuvana, B. Radha, Narendra Kurra and G. U. Kulkarni “Metallic conduction in NiS2 nanocrystalline structures” J. Phys. Chem. C (I. F. 4.484) 2011, 21, 10462.
2. T. Vijaykumar, Narendra Kurra and G. U. Kulkarni “Electron beam induced carbonaceous deposition as a local dielectric for CNT circuits” Int. J. Nanosci. (I. F. 1.2) 2011, 10, 935.
2010
1. Narendra Kurra, Adina Scott, and Giridhar U. Kulkarni “Electrocondensation and Evaporation of Attoliter Water Droplets: Direct Visualization Using Atomic Force Microscopy” Nano Research (I. F. 8) 2010, 3, 307.
[*Corresponding author, +Equal contribution]