Kulbhushan Mishra, et al. 'Magnetic properties and identification of Griffths-like phase in Mn2FeSi Heusler antiferromagnet.' J. Alloys. Compds. Vol.970, 172611 (2023). Article link.
Kulbhushan Mishra, et al. 'Identification of disorder and effect of annealing on physical properties of half-metallic Fe–Ti–Sn based Heusler alloys.' J. Appl. Phys., Vol. 137, 075107 (2025). Article link.
S. Chaudhuri, et al. 'Half metallicity in Cr substituted Fe2TiSn .' Sci. Rep. Vol. 11, 524 (2021). Article link.
S. Chaudhuri, et al. 'Origin of the magnetic ground state developed upon Si, Ge, and Sb-substitution at Sn site in Fe2TiSn'. J. Appl. Phys., Vol. 126, 083904 (2019). Article link.
M.K. Majee et al. 'Griffiths phase in antiferromagnetic CuCr0.95Ti0.05O2'. J. Magn. Magn. Matter., Vol. 485, 112 (2019) Article link.
M. K. Majee et al. 'Correlation of Local Crystal Structural and Physical Properties of the Delafossite CuCr1-xFexO2 (0 ≤ x ≤ 1) series'. Inorg. Chem., Vol. 59, 6790 (2020). Article link.
Tamalika Samanta et al. 'Unraveling the magnetic ground state and local lattice distortions in Z2XY-type full Heusler compounds: an EXAFS study.' J. Phys. Chem. C. Vol. 126, 17670 (2022). Article link.
M.K. Majee et al. 'Comparison of local crystal structure and magnetic properties of cation substituted LiNiO2 compositions.' Mat. Res. Bull. Vol. 116, 143 (2019). Article link.
M. K. Majee et al. 'Local crystal structure and physical properties change of p-type transparent conducting oxide: CuCrO2 upon Ti substitution'. J. Appl. Phys., Vol. 122, 225111 (2017). Article link.
P. Suchismita Behera et al. 'Influence of local structural distortions on magnetism and spin-phonon coupling of multiferroic spinel chalcogenide'. J. Appl. Phys., Vol. 121, 243905 (2017). Article link.
P. A. Bhobe, et al. 'Electronic Structure Evolution across the Peierls Metal-Insulator Transition in a Correlated Ferromagnet.' Phys. Rev. X, Vol. 5, 041004 (2015). Article link.
P. A. Bhobe, et al. 'Evidence for correlated insulator to antiferromagnetic metal transition in CrN.' Phys. Rev. Lett., Vol. 104, 236404 (2010). Article link.
P. A. Bhobe, et al. 'Electronic-structure of an antiferromagnetic metal: CaCrO3.' Phys. Rev. B Vol. 83, 165132 (2011). Article link.
P.A. Bhobe, et al. 'Local Atomic Structure of Martensitic Ni2+xMn1−xGa : An EXAFS Study.' Phys. Rev. B, Vol. 74, 224425 (2006). Article link.
Kulbhushan Mishra, et al. 'Observation of Kondo-like electrical transport in ferromagnetic Fe2Ti1−xMnxSn Heusler alloy.' Phys. Rev. B., Vol. 111, 235146 (2025). Article link.
Kulbhushan Mishra, et al. 'Evidence of magnetoelastic coupling and magnetic phase coexistence in Mn1.7Fe 1.3Si Heusler Alloy'. arXiv preprint arXiv:2502.09910 (2025). Article link.
S. Chaudhuri, et al. 'Possible half-metallicity and variable range hopping transport in Sb-substituted Fe2TiSn Heusler alloys'. J. Phys.: Condens. Matter, Vol. 30, 015703 (2018) Article link
Tamalika Samanta, et al. 'Itinerant Magnetism in Ga-Rich Ga–Mn–Co Full Heusler Alloys'. Phys. Stat. Solidi (b), Vol. 258, 2000461 (2020). Article link.
Gowthamaraju S et al. 'Improved Figure of Merit and Other Thermoelectric Properties of Sn1-xCuxSe.' Appl. Phys. Lett. Vol. 113, 24 (2018). Article link.
Gowthamaraju S et al. 'Impact of different morphological structures on physical properties of nano-structured SnSe.' J. Phys. Chem. C. Vol. 122, 13182 (2018). Article link.
Gowthamaraju S et al. 'Understanding the role of defects in influencing thermoelectric properties of SnSe'. Curr. Appl. Phys. Vol. 24, 19-23 (2021). Article link.
P. S. Behera et al. 'Magnetic Interactions in Cd1−xMxCr2Se4' J. Magn. Magn. Matter. Vol. 394 200, (2015). Article link.
Aarti Lakhara, et al. ‘Metal-Insulator transition and Charge Transport Mechanisms in SnSe2 Field-Effect Transistor.' arXiv preprint arXiv:2507.14536 (2025). Article link.
Bikash. R. Sahoo, et al. 'Local structural distortions and thermochromic properties of Cs2NaFeCl6 halide double perovskite.' J. Mater. Chem. A., Vol. 12, 33699 (2024). Article link.
Bikash. R. Sahoo, et al. 'Viability of Cs2AgBiCl6: Cr3+/ Yb3+ and Cs2AgInCl6: Cr3+/ Yb3+ as efficient photoluminescent materials and other photophysical applications.' ACS Appl. Opt. Mater., Vol. 2, 617 (2024). Article link.
Bikash. R. Sahoo, et al. 'Unveiling Electron-Phonon Interaction that Influences the Photoluminescence Properties of Cs2NaxAg1−xBiCl6 Mixed Halide Double Perovskites.' J. Phys. Chem. C, Vol. 128, 10915 (2024). Article link.