Zobrazeno 1 - 10
of 18
pro vyhledávání: '"Ranjan Kr. Giri"'
Autor:
Ranjan Kr. Giri, Anjali B. Thakkar, Sunil H. Chaki, R.B. Subramanian, Parth Thakor, Milind P. Deshpande
Publikováno v:
Results in Chemistry, Vol 10, Iss , Pp 101736- (2024)
The most prevalent type of cancer found in the world is lung cancer. Furthermore, chemotherapeutic intervention for lung carcinomas is frequently associated with severe off-target effects. As a result, there is a worldwide push to investigate alterna
Externí odkaz:
https://doaj.org/article/a3e9817abb3841b580a835709c8f46c7
Autor:
Priteshkumar M. Thakor, Rajesh J. Patel, Ranjan Kr. Giri, Sunil H. Chaki, Ankurkumar J. Khimani, Yati H. Vaidya, Parth Thakor, Anjali B. Thakkar, Jatin D. Patel
Publikováno v:
ACS Omega, Vol 8, Iss 36, Pp 33069-33082 (2023)
Externí odkaz:
https://doaj.org/article/21913a2b2f934ea28ca216955e3c9a4d
Autor:
Mehul S. Dave, Ranjan Kr. Giri, Rajiv D. Vaidya, Kaushik R. Patel, Shivani R. Bharucha, Mitesh B. Solanki
Publikováno v:
Next Materials, Vol 7, Iss , Pp 100361- (2025)
Niobium diselenide (NbSe2) crystals were synthesized using the chemical vapour transport (CVT) technique. The Generalized Gradient Approximation (GGA) method was used in the density functional theory (DFT) calculation. The Perdew-Burke-Ernzerhof (PBE
Externí odkaz:
https://doaj.org/article/8be3c517b61845ffa3cf2885217e5984
Autor:
Rohitkumar M. Kannaujiya, Sunil H. Chaki, Ankurkumar J. Khimani, Ranjan Kr. Giri, Anilkumar B. Hirpara, Yati H. Vaidya, Milind P. Deshpande
Publikováno v:
Chemical Physics Impact, Vol 6, Iss , Pp 100219- (2023)
The sonochemical method is used to synthesize SnTe nanoparticles (Nps). Elemental analyses validated the stoichiometry of the nanoparticles. The phase and structure of the unit cell are verified by X-ray diffraction which shows nanoparticles are SnTe
Externí odkaz:
https://doaj.org/article/49c2f6039919402193ca8c75d7bf32a6
Autor:
Ankurkumar J. Khimani, Sunil H. Chaki, Ranjan Kr. Giri, Reena R. Meena, Rohitkumar M. Kannaujiya, Milind P. Deshpande
Publikováno v:
Chemical Thermodynamics and Thermal Analysis, Vol 9, Iss , Pp 100104- (2023)
The nanoparticles (Nps) of tin disulfide (SnS2) are synthesized by sonochemical route. The Nps are characterized by dispersive analysis of X-ray energy (EDAX) and X-ray photoelectron spectroscopy (XPS) to get the chemical composition. The diffraction
Externí odkaz:
https://doaj.org/article/c2012287a81440be8f540160380d45ab
Publikováno v:
Engineering Proceedings, Vol 56, Iss 1, p 258 (2023)
NbSe2 nanoparticles, the representative member of the VB TMDCs group, have garnered significant attention due to their unique structural and optical properties, which make them promising candidates for various applications in nanoelectronics and opto
Externí odkaz:
https://doaj.org/article/76a506fa44fc4fec9af954f394c7b93d
Autor:
Anilkumar B. Hirpara, Sunil H. Chaki, Rohitkumar M. Kannaujiya, Ankurkumar J. Khimani, Zubin R. Parekh, Yati H. Vaidya, Ranjan Kr. Giri, M.P. Deshpande
Publikováno v:
Applied Surface Science Advances, Vol 12, Iss , Pp 100338- (2022)
Cu2ZnSnS4 (CZTS) nanoparticles (NPs) are synthesized by sonochemical technique. The composition analysis showed the synthesized NPs to be stoichiometric. The X-ray diffraction confirms the CZTS phase and tetragonal unit cell structure. Three peaks co
Externí odkaz:
https://doaj.org/article/ab615592b58744579708546e441deeaa
Autor:
Ranjan Kr. Giri, Sunil Chaki, Ankurkumar J. Khimani, Yati H. Vaidya, Parth Thakor, Anjali B. Thakkar, Swati J. Pandya, Milind P. Deshpande
Publikováno v:
ACS Omega, Vol 6, Iss 40, Pp 26533-26544 (2021)
Externí odkaz:
https://doaj.org/article/e1c771b6b29d4cd1a70070b32b0f13f7
Autor:
Rohitkumar M. Kannaujiya, Sunil H. Chaki, Ankurkumar J. Khimani, Anilkumar B. Hirpara, Zubin R. Parekh, Ranjan Kr. Giri, Shivam Patel, M. P. Deshpande
Publikováno v:
Journal of Materials Science: Materials in Electronics. 33:20823-20836
Autor:
Zalak S. Kachhia, Sunil H. Chaki, Ranjan Kr. Giri, Zubin R. Parekh, Rohitkumar M. Kannaujiya, Anilkumar B. Hirpara, M.P. Deshpande, Jiten P. Tailor
Publikováno v:
Materials Today: Proceedings.