Zobrazeno 1 - 10
of 51
pro vyhledávání: '"Rajendra P. Panmand"'
Publikováno v:
AIP Advances, Vol 3, Iss 2, Pp 022123-022123 (2013)
The novel Bi2S3 quantum dots (QDs) glass nanosystems with unique magnetic properties have been investigated. The monodispersed QDs of size in the range of 3 to 15 nm were grown in the glass matrix. The optical study of these nanosystems clearly demon
Externí odkaz:
https://doaj.org/article/30d726f3efe54fa084d923a539b38b9e
Autor:
Aniruddha K. Kulkarni, Suresh W. Gosavi, Milind V. Kulkarni, Bharat B. Kale, Anuradha A. Ambalkar, Yogesh A. Sethi, Rajendra P. Panmand
Publikováno v:
RSC Advances. 11:29877-29886
Herein, we report Sn3O4 and Sn3O4 nanoflake/graphene for photocatalytic hydrogen generation from H2O and H2S under natural “sunlight” irradiation. The Sn3O4/graphene composites were prepared by a simple hydrothermal method at relatively low tempe
Autor:
Yogesh A. Sethi, Aarti R. Gunjal, Arvind V. Nagawade, Rajendra P. Panmand, Chitra K. Ugale, Bharat B. Kale, Jalindar D. Ambekar, Ujjwala V. Kawade
Publikováno v:
RSC Advances. 11:14399-14407
The novel marigold flower like SiO2@ZnIn2S4 nano-heterostructure was fabricated using an in situ hydrothermal method. The nanoheterostructure exhibits hexagonal structure with marigold flower like morphology. The porous marigold flower assembly was c
Autor:
Bharat B. Kale, Rajendra P. Panmand, Ujjwala V. Kawade, Sonali D. Naik, Yogesh A. Sethi, Milind V. Kulkarni, Parag V. Adhyapak, Anuradha A. Ambalkar
Publikováno v:
New Journal of Chemistry. 44:3366-3374
SnO2@C nanocomposites were synthesized using a citrate gel method in one step. Carbon has been used to increase the conductivity of pristine SnO2. The SnO2@C nanocomposites show nanoparticles sized in the range of 30–50 nm. A structural study by XR
Autor:
Yogesh A, Sethi, Aniruddha K, Kulkarni, Anuradha A, Ambalkar, Rajendra P, Panmand, Milind V, Kulkarni, Suresh W, Gosavi, Bharat B, Kale
Publikováno v:
RSC advances. 11(48)
Herein, we report Sn
Autor:
Yogesh A. Sethi, Bharat B. Kale, Dnyaneshwar R. Shinde, Latesh K. Nikam, Rajendra P. Panmand, Manohar G. Chaskar, Kanchan M. Joshi
Publikováno v:
RSC Advances. 9:2484-2492
In the present study, we demonstrated the use of fragmented lignin in the synthesis of a hierarchical-type structure of ZnO nanorods. Lignin was isolated from bagasse by the microwave assisted method and its fragmentation was achieved in alkaline con
Autor:
Sunil R. Kadam, Ramchandra S. Kalubarme, Bharat B. Kale, Rajendra P. Panmand, Milind V. Kulkarni, Ujjwala V. Kawade, Sonali D. Naik, Anuradha A. Ambalkar
Publikováno v:
Materials Chemistry Frontiers. 3:587-596
Herein, we report the facile scalable synthesis of silicon (Si)/molybdenum disulfide–graphene (MoS2–G) nanocomposites with various Si/MoS2 ratios as anode materials for lithium-ion batteries (LIB). XRD studies indicated the existence of silicon,
Autor:
Supriya K. Khore, Suresh W. Gosavi, Aniruddha K. Kulkarni, Yogesh A. Sethi, Sandip C. Kanade, Rajendra P. Panmand, Milind V. Kulkarni, Bharat B. Kale
Publikováno v:
RSC Advances. 9:28525-28533
The synthesis of Ag-nanoparticle-decorated CdMoO4 and its photocatalytic activity towards hydrogen generation under sunlight has been demonstrated. The CdMoO4 samples were synthesized by a simple hydrothermal approach in which Ag nanoparticles were i
Autor:
Deepak R. Patil, Aniruddha K. Kulkarni, Yogesh A. Sethi, Aarti R. Gunjal, Rajendra P. Panmand, Bharat B. Kale, Suresh W. Gosavi, Anuradha A. Ambalkar, Milind V. Kulkarni
Publikováno v:
Sustainable Energy & Fuels. 3:793-800
CdS nanoparticles have been grown on the surface of ZnWO4 nanorods via an in situ hydrothermal approach and their photocatalytic activities towards hydrogen (H2) evolution and dye degradation under solar light have been demonstrated. The structural,
Autor:
Rajendra P. Panmand, Ravindra S. Sonawane, Sudhir S. Arbuj, Bharat B. Kale, Supriya K. Khore, Sunit Rane, Govind Umarji, Shubhangi R. Damkale
Publikováno v:
Sustainable Energy & Fuels. 3:3406-3414
Two-dimensional (2D) hexagonal tin disulfide (SnS2) nanostructures were prepared via a hydrothermal method using ethylenediamine as a capping agent. The structural study indicates the formation of the hexagonal phase of SnS2 for all the samples synth