Prakash Chand

4.1k total citations · 2 hit papers
126 papers, 3.1k citations indexed

About

Prakash Chand is a scholar working on Electronic, Optical and Magnetic Materials, Electrical and Electronic Engineering and Materials Chemistry. According to data from OpenAlex, Prakash Chand has authored 126 papers receiving a total of 3.1k indexed citations (citations by other indexed papers that have themselves been cited), including 71 papers in Electronic, Optical and Magnetic Materials, 65 papers in Electrical and Electronic Engineering and 50 papers in Materials Chemistry. Recurrent topics in Prakash Chand's work include Supercapacitor Materials and Fabrication (50 papers), Advancements in Battery Materials (29 papers) and ZnO doping and properties (22 papers). Prakash Chand is often cited by papers focused on Supercapacitor Materials and Fabrication (50 papers), Advancements in Battery Materials (29 papers) and ZnO doping and properties (22 papers). Prakash Chand collaborates with scholars based in India, United States and Venezuela. Prakash Chand's co-authors include Swati Sharma, Aman Joshi, Anurag Gaur, Sunaina Saini, Ashavani Kumar, Hardeep Anand, Vishal Singh, Umesh Kumar Gaur, Shruti Kaushik and Sukriti Sukriti and has published in prestigious journals such as The Journal of Chemical Physics, SHILAP Revista de lepidopterología and Chemical Physics Letters.

In The Last Decade

Prakash Chand

123 papers receiving 3.1k citations

Hit Papers

Supercapacitor and electrochemical techniques: A bri... 2021 2026 2022 2024 2023 2021 100 200 300

Peers

Prakash Chand
Xinyu Li China
Gang Sun China
Dan Zhang China
Tong Zhou China
Lei Ma China
Prakash Chand
Citations per year, relative to Prakash Chand Prakash Chand (= 1×) peers Yaxin Wang

Countries citing papers authored by Prakash Chand

Since Specialization
Citations

This map shows the geographic impact of Prakash Chand's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Prakash Chand with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Prakash Chand more than expected).

Fields of papers citing papers by Prakash Chand

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Prakash Chand. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Prakash Chand. The network helps show where Prakash Chand may publish in the future.

Co-authorship network of co-authors of Prakash Chand

This figure shows the co-authorship network connecting the top 25 collaborators of Prakash Chand. A scholar is included among the top collaborators of Prakash Chand based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Prakash Chand. Prakash Chand is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Kaushik, Shruti, Prakash Chand, & Swati Sharma. (2025). Nanoarchitectonics for ultrahigh capacitance with superior energy and power density of sustainable zeolitic imidazolate framework-67 in redox additive electrolyte. Materials Research Bulletin. 186. 113348–113348. 6 indexed citations
2.
., Anu, Pawanpreet Kour, Khadim Hussain, et al.. (2025). Microwave-synthesized Bi 2 MoO 6 nanoplates for high performance symmetric and asymmetric supercapattery devices. Materials Advances. 6(15). 5310–5323. 1 indexed citations
3.
Kaur, Jaspreet, et al.. (2025). Synergetic effect driven WO3/MoS2 nanocomposite based electrode for high-efficiency supercapacitors. Electrochimica Acta. 523. 145965–145965. 10 indexed citations
4.
Sharma, Swati, Prakash Chand, & Shruti Kaushik. (2024). A critical review of recent advancements in zinc based metal organic framework nanocomposites and their derivatives for supercapacitor applications with future perspectives and challenges. Sustainable materials and technologies. 41. e01045–e01045. 20 indexed citations
5.
Sharma, Swati & Prakash Chand. (2024). Ultrahigh energy and power density of zeolitic imidazolate framework-8 asymmetric and symmetric supercapacitors in an organic electrolyte for energy storage devices. Journal of Energy Storage. 94. 112459–112459. 19 indexed citations
6.
Joshi, Aman, Prakash Chand, & Sunaina Saini. (2024). Transition metals doped BiPO4 nanostructures for energy storage applications. Journal of Alloys and Compounds. 982. 173663–173663. 5 indexed citations
7.
Chand, Prakash, et al.. (2024). Enhanced optoelectronic and thermoelectric properties of half Heusler compounds KXSb (X = Be, Mg, Ca and Sr): A first principle study. Journal of Physics and Chemistry of Solids. 196. 112345–112345. 3 indexed citations
8.
Kaushik, Shruti, et al.. (2024). Recent advancements in cathode materials for high-performance Li-ion batteries: Progress and prospects. Journal of Energy Storage. 97. 112818–112818. 47 indexed citations
9.
Chand, Prakash, et al.. (2024). One-step growth of additive free Ni-BDC electrode as high performance asymmetric supercapacitor device. Journal of Physics and Chemistry of Solids. 196. 112320–112320. 7 indexed citations
10.
Chand, Prakash, et al.. (2024). Effect of electrolytes on supercapacitive behavior of cubic shaped pristine cuprous oxide synthesized via sol-gel approach. Ceramics International. 50(16). 28004–28015. 1 indexed citations
11.
Chand, Prakash, et al.. (2024). Solvent-regulated fabrication of Ni-MOF-based asymmetric supercapacitor device. Inorganic Chemistry Communications. 170. 113227–113227. 7 indexed citations
12.
Sharma, Swati & Prakash Chand. (2023). Zeolitic Imidazolate Framework-8 and redox-additive electrolyte based asymmetric supercapacitor: A synergetic combination for ultrahigh energy and power density. Journal of Energy Storage. 73. 108961–108961. 36 indexed citations
13.
Sharma, Swati & Prakash Chand. (2023). Enhanced electrochemical performance of fabricated asymmetric supercapacitor in redox additive electrolyte. Ceramics International. 50(3). 5775–5786. 27 indexed citations
14.
Kaushik, Shruti, Prakash Chand, & Swati Sharma. (2023). Asymmetric supercapacitor device fabrication of pristine Zeolitic Imidazolate Framework-67 with ultrahigh performance and cyclic stability. Journal of Energy Storage. 78. 110033–110033. 43 indexed citations
15.
Sravani, K. Girija, et al.. (2022). Design and Analysis of Bio-Inspired Micro-Needle for Drug Delivery Applications. IEEE Transactions on NanoBioscience. 22(2). 237–244. 6 indexed citations
16.
Joshi, Aman & Prakash Chand. (2021). Role of microwave irradiation power rates on electrochemical performance of BiPO4 nanostructures as electrode material for energy storage applications. Materials Chemistry and Physics. 275. 125279–125279. 10 indexed citations
17.
Chand, Prakash, et al.. (2018). Potential of natural enemy, Epiricania melanoleuca and Tetrastichus pyrillae against leaf hopper under sugarcane agro ecosystem in Bihar. Journal of Entomology and Zoology Studies. 6(4). 1220–1225. 1 indexed citations
18.
Kumar, Sunil, et al.. (2011). Effect of Rotation on Double-Diffusive Convection in a Magnetized Ferrofluid with Internal Angular Momentum. Journal of Applied Fluid Mechanics. 4(4). 10 indexed citations
19.
Singh, R. P., et al.. (1997). Ecological Studies on Rosa webbiana Wall. Ex Royle in Cold Desert Areas of Spiti Valley in Himachal Pradesh. Indian Forester. 123(9). 827–830. 1 indexed citations
20.
Singh, R. P., Mahesh Gupta, & Prakash Chand. (1992). Autecology of Ailanthus glandulosa Desf. in Western Himalayas. Indian Forester. 118(12). 917–921. 8 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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