Zobrazeno 1 - 10
of 99
pro vyhledávání: '"Hemraj M. Yadav"'
Autor:
Rajendra Kumar Nare, Sivalingam Ramesh, Praveen Kumar Basavi, Vijay Kakani, Chinna Bathula, Hemraj M. Yadav, Prakash Babu Dhanapal, Rama Krishna Reddy Kotanka, Visweswara Rao Pasupuleti
Publikováno v:
Scientific Reports, Vol 12, Iss 1, Pp 1-10 (2022)
Abstract The Co3O4@N-MWCNT composite was synthesized by a sonication-supported thermal reduction process for supercapacitor applications. The structural and morphological properties of the materials were characterized via Raman, XRD, XPS, SEM–EDX,
Externí odkaz:
https://doaj.org/article/14df4626831047588f716b14e7b63991
Autor:
Sivalingam Ramesh, Hemraj M. Yadav, Surendra K. Shinde, C. Bathula, Young-Jun Lee, Ravi Kumar Cheedarala, Hyun-Seok Kim, Heung Soo Kim, Joo-Hyung Kim
Publikováno v:
Journal of Materials Research and Technology, Vol 9, Iss 3, Pp 4183-4193 (2020)
The fabrication, and characterization of SnO2@Co3O4/NGO composite with a nanogranular-like morphology was synthesized by a thermal reduction process in presence of ammonia and urea as catalyst. The structure and morphology of the composite were inves
Externí odkaz:
https://doaj.org/article/c4b831e21ce54b6aadafb8885942bf86
Autor:
Sivalingam Ramesh, Hemraj M. Yadav, K. Karuppasamy, Dhanasekaran Vikraman, Hyun-Seok Kim, Joo-Hyung Kim, Heung Soo Kim
Publikováno v:
Journal of Materials Research and Technology, Vol 8, Iss 5, Pp 4227-4238 (2019)
The highly efficient hydrothermal chemical reaction was used to synthesis the manganese oxide@nitrogen doped graphene oxide/polypyrrole (MnO2@NGO/PPy) composites as a high capacitance electrode material for supercapacitors. The prepared composites st
Externí odkaz:
https://doaj.org/article/e75dc3fd69d94d429274a361881bfb66
Autor:
Surendra K. Shinde, Dae-Young Kim, Manu Kumar, Govindhasamy Murugadoss, Sivalingam Ramesh, Asiya M. Tamboli, Hemraj M. Yadav
Publikováno v:
Polymers, Vol 14, Iss 3, p 511 (2022)
Today’s world requires high-performance energy storage devices such as hybrid supercapacitors (HSc), which play an important role in the modern electronic market because supercapacitors (Sc) show better electrical properties for electronics devices
Externí odkaz:
https://doaj.org/article/50203836d9704861b41d1d16d4b49bf2
Publikováno v:
Nanomaterials, Vol 11, Iss 2, p 395 (2021)
Cellulose nanofiber (CNF) and hybrid zeolite imidazole framework (HZ) are an emerging biomaterial and a porous carbonous material, respectively. The composite of these two materials could have versatile physiochemical characteristics. A cellulose nan
Externí odkaz:
https://doaj.org/article/f8713a8d24c04eb1b80dd79246ad7a8b
Publikováno v:
Metals, Vol 10, Iss 12, p 1698 (2020)
Developing efficient electrochemically active nanostructures from Earth-abundant elements has gained significant interest in recent years. Among different transition metals, nickel and copper are abundant electrocatalysts for energy-storage applicati
Externí odkaz:
https://doaj.org/article/2d722105319240c79d4bc3252b3d3a0d
Autor:
Hemraj M. Yadav, Narayan Chandra Deb Nath, Jeonghun Kim, S. K. Shinde, Sivalingam Ramesh, Faruk Hossain, Olaniyan Ibukun, Jae-Joon Lee
Publikováno v:
Polymers, Vol 12, Iss 8, p 1666 (2020)
A binder-free process for the electrode preparation for supercapacitor application was suggested by drop casting graphene nanoplatelets on a carbon fiber (GnP@CF) followed by electrodeposition of Ni nanoparticles (NPs). The microstructure of the elec
Externí odkaz:
https://doaj.org/article/25c78adbaa12427c9f7ff17e0af03648
Autor:
Surendra K. Shinde, Deepak P. Dubal, Hemraj M. Yadav, Ajay D. Jagadale, Nagesh Maile, Swapnil S. Karade, Dae-Sung Lee, Dae-Young Kim
Publikováno v:
Ceramics International. 48:25020-25033
Autor:
Surendra K. Shinde, Swapnil S. Karade, Nagesh C. Maile, Hemraj M. Yadav, Ajay D. Jagadale, Monali B. Jalak, Dae‐Young Kim
Publikováno v:
International Journal of Energy Research. 46:16693-16715
Autor:
Govindhasamy Murugadoss, Gunasekaran Manibalan, Subhenjit Hazra, Manavalan Rajesh Kumar, Jothi Ramalingam Rajabathar, Hemraj M. Yadav
Publikováno v:
Journal of Materials Science: Materials in Electronics. 33:13593-13603