Manisha Phadatare
Postdoktor|Postdoc
- Professional title: Postdoc
- Department: Department of Natural Sciences (NAT)
- Telephone: 010-142 78 85
- Email: Manisha.Phadatare@miun.se
- Room number: S420
- Research centers: Fibre Science and Communication Network
- Subject: Physics
Publications
Articles in journals
Conference papers
Articles in journals
Rastabi, S. A. , Mamoory, R. S. , Blomquist, N. , Phadatare, M. R.
&
Olin, H. (2020). Synthesis of a NiMoO4/3D-rGO nanocomposite via starch medium precipitation method for supercapacitor performance. Batteries, vol. 6: 1
![]()
Koli, R. R. , Phadatare, M. R. , Sinha, B. B. , Sakate, D. M. , Ghule, A. V. , Ghodake, G. S. , Deshpande, N. G.
&
Fulari, V. J. (2019). Gram bean extract-mediated synthesis of Fe3O4 nanoparticles for tuning the magneto-structural properties that influence the hyperthermia performance. Journal of the Taiwan Institute of Chemical Engineers / Elsevier, vol. 95, pp. 357-368.
![]()
Phadatare, M. R. , Patil, R. , Blomquist, N. , Forsberg, S. , Örtegren, J. , Hummelgård, M. , Meshram, J. , Hernández, G. & et al. (2019). Silicon-Nanographite Aerogel-Based Anodes for High Performance Lithium Ion Batteries. Scientific Reports, vol. 9
![]()
Rastabi, S. A. , Mamoory, R. S. , Dabir, F. , Blomquist, N. , Phadatare, M. R.
&
Olin, H. (2019). Synthesis of NiMoO4/3D-rGO Nanocomposite in Alkaline Environments for Supercapacitor Electrodes. Crystals, vol. 9: 1
![]()
Meshram, J. , Koli, V. B. , Borde, L. C. , Phadatare, M. R.
&
Pawar, S. H. (2018). Structural, spectroscopic and anti-microbial inspection of PEG capped ZnO nanoparticles for biomedical applications. Materials Research Express, vol. 5: 4
![]()
Phadatare, M. R. , Meshram, J. V. , Gurav, K. V. , Kim, J. H.
&
Pawar, S. H. (2016). Enhancement of specific absorption rate by exchange coupling of the core–shell structure of magnetic nanoparticles for magnetic hyperthermia. Journal of Physics D, vol. 49: 9
![]()
Conference papers
Dhumal, J. , Bandgar, S. S. , Phadatare, M. R.
&
Shahane, G. S. (2018). Citrate capped Fe0.7Mn0.3Fe2O4 ferrite nanoparticles for hyperthermia.
In
AIP Conference Proceedings. (AIP Conference Proceedings)
![]()