Raghavan Gopalan
Raghavan Gopalan
Regional Director(Retd.), ARCI, India,, Adjunct Professor, IISc, Bangalore
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Zitiert von
Zitiert von
Sm (Co, Cu) 5∕ Fe exchange spring multilayer films with high energy product
J Zhang, YK Takahashi, R Gopalan, K Hono
Applied Physics Letters 86 (12), 2005
Efficient reduced graphene oxide grafted porous Fe 3 O 4 composite as a high performance anode material for Li-ion batteries
S Bhuvaneswari, PM Pratheeksha, S Anandan, D Rangappa, R Gopalan, ...
Physical Chemistry Chemical Physics 16 (11), 5284-5294, 2014
Fabrication of bulk nanocrystalline Fe–C alloy by spark plasma sintering of mechanically milled powder
HW Zhang, R Gopalan, T Mukai, K Hono
Scripta materialia 53 (7), 863-868, 2005
Dual Stabilization and Sacrificial Effect of Na2CO3 for Increasing Capacities of Na-Ion Cells Based on P2-NaxMO2 Electrodes
M Sathiya, J Thomas, D Batuk, V Pimenta, R Gopalan, JM Tarascon
Chemistry of Materials 29 (14), 5948-5956, 2017
Structural stability and superior electrochemical performance of Sc-doped LiMn2O4 spinel as cathode for lithium ion batteries
S Bhuvaneswari, UV Varadaraju, R Gopalan, R Prakash
Electrochimica Acta 301, 342-351, 2019
Direct evidence for Cu concentration variation and its correlation to coercivity in Sm (Co0. 74Fe0. 1Cu0. 12Zr. 04) 7.4 ribbons
R Gopalan, K Hono, A Yan, O Gutfleisch
Scripta Materialia 60 (9), 764-767, 2009
A Novel α‐MoO3/Single‐Walled Carbon Nanohorns Composite as High‐Performance Anode Material for Fast‐Charging Lithium‐Ion Battery
SR Sahu, VR Rikka, P Haridoss, A Chatterjee, R Gopalan, R Prakash
Advanced Energy Materials 10 (36), 2001627, 2020
Structural and magnetic studies on spark plasma sintered SmCo5/Fe bulk nanocomposite magnets
NVR Rao, R Gopalan, MM Raja, V Chandrasekaran, D Chakravarty, ...
Journal of magnetism and magnetic materials 312 (2), 252-257, 2007
In situ/ex situ investigations on the formation of the mosaic solid electrolyte interface layer on graphite anode for lithium-ion batteries
VR Rikka, SR Sahu, A Chatterjee, PV Satyam, R Prakash, MSR Rao, ...
The Journal of Physical Chemistry C 122 (50), 28717-28726, 2018
Synthesis and Characterisation of Nanomaterials.
P Saravanan, R Gopalan, V Chandrasekaran
Defence Science Journal 58 (4), 2008
Effects of surfactant on the structural and magnetic properties of hydrothermally synthesized NiFe2O4 nanoparticles
DK Dinkar, B Das, R Gopalan, BS Dehiya
Materials Chemistry and Physics 218, 70-76, 2018
Room temperature multiferroism and magnetoelectric coupling in BaTiO3–BaFe12O19 system
A Srinivas, R Gopalan, V Chandrasekharan
Solid state communications 149 (9-10), 367-370, 2009
Identification of the cell boundary phase in the isothermally aged commercial Sm (Co0. 725Fe0. 1Cu0. 12Zr0. 04) 7.4 sintered magnet
R Gopalan, T Ohkubo, K Hono
Scripta materialia 54 (7), 1345-1349, 2006
Microstructure, magnetic properties and magnetocaloric effect in melt-spun Ni–Mn–Ga ribbons
NVR Rao, R Gopalan, V Chandrasekaran, KG Suresh
Journal of alloys and compounds 478 (1-2), 59-62, 2009
Microstructures and coercivities of SmCox and Sm (Co, Cu) 5 films prepared by magnetron sputtering
J Zhang, YK Takahashi, R Gopalan, K Hono
Journal of magnetism and magnetic materials 310 (1), 1-7, 2007
Study on morphology and magnetic behavior of SmCo5 and SmCo5/Fe nanoparticles synthesized by surfactant-assisted ball milling
P Saravanan, M Premkumar, AK Singh, R Gopalan, V Chandrasekaran
Journal of Alloys and Compounds 480 (2), 645-649, 2009
Phase transformation and magnetic properties in Ni–Mn–Ga Heusler alloys
I Babita, MM Raja, R Gopalan, V Chandrasekaran, S Ram
Journal of alloys and compounds 432 (1-2), 23-29, 2007
Magneto-structural transformation studies in melt-spun Ni–Mn–Ga ribbons
NVR Rao, R Gopalan, MM Raja, JA Chelvane, B Majumdar, ...
Scripta materialia 56 (5), 405-408, 2007
The quasi-crystalline phase in the Mg—Al—Zn system
T Rajasekharan, D Akhtar, R Gopalan, K Muraleedharan
Nature 322 (6079), 528-530, 1986
Anisotropic Nd–Fe–B nanocrystalline magnets processed by spark plasma sintering and in situ hot pressing of hydrogenation–decomposition–desorption–recombination powder
R Gopalan, H Sepehri-Amin, K Suresh, T Ohkubo, K Hono, T Nishiuchi, ...
Scripta Materialia 61 (10), 978-981, 2009
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