2022 |
Effect of magnetic phase fluctuation on magnetic and magnetocaloric properties of polycrystalline (Nd0. 5Sm0. 5) 0.5 (Sr0. 75Ba0. 25) 0.5 MnO3 compound |
J. Magn. Magn.Mater. |
557 |
S. Chatterjee, Kalipada Das, and I. Das |
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Scopus |
|
Yes |
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Document
|
2022 |
Influence of phase boundary on magnetic and magnetocaloric properties of nanocrystalline La0. 17Ca0. 83MnO3 sample |
J. Magn. Magn.Mater. |
557 |
Nirmal Mondal, Soma Chatterjee, Kalipada Das, S Kumar, I Das |
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Scopus |
|
Yes |
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Document
|
2022 |
A comparative study of the magnetic and magnetocaloric effect of polycrystalline Gd0.9Y0.1MnO3 and Gd0.7Y0.3MnO3 compounds: Influence of Y-ions on the magnetic state of GdMnO3 |
J. Magn. Magn.Mater. |
551 |
A. Ahmed, D. Mazumdar, Kalipada Das, and I. Das |
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Scopus |
|
Yes |
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Document
|
2022 |
Magnetic and magnetocaloric properties of nanocrystalline sample of a glassy ferromagnetic compound: Modification of short range ordering |
Materials Research Bulletin |
1150 |
S. Chatterjee, D. Mazumdar, Kalipada Das, and I. Das |
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Scopus |
|
Yes |
|
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Document
|
2022 |
Influence of polymorphic magnetic phases on exchange bias effect in bulk and nanocrystalline La0.375Ca0.625MnO3 compound |
J. Magn. Magn.Mater. |
550 |
S. Chatterjee, Kalipada Das, and I. Das |
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Scopus |
|
Yes |
|
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Document
|
2022 |
Study of devitrification of kinetically arrested magnetic phase and magnetocaloric effect for nanocrystalline Pr0.65(Ca0.7Sr0.3)0.35MnO3 compound |
J. Magn. Magn.Mater. |
546 |
A. Karikar, S. Chatterjee, D. Mazumdar, Kalipada Das, and I. Das |
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Scopus |
|
Yes |
|
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Document
|
2022 |
Magnetic and magnetocaloric effect study of a polycrystalline Gd 0.5Sr0.5− xCa x MnO 3 compound |
Physical Chemistry Chemical Physics |
24 |
S. Chatterjee, Kalipada Das, and I. Das |
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Scopus |
|
Yes |
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Document
|
2021 |
Schottky-like anomaly in the heat capacity and magnetocaloric effect of charge-ordered single-crystalline (Sm, Ca, Sr)MnO3 compound |
J. Magn. Magn.Mater. |
540 |
D. Mazumdar, Kalipada Das, and I. Das |
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Scopus |
|
Yes |
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Document
|
2021 |
Spin-polarized tunneling and polaronic transport properties ofpolycrystalline (Sm1−yGdy)0.55Sr0.45MnO3 (y = 0.5 and 0.7) compounds |
J. Phys.: Condens. Matter |
33 |
D. Mazumdar, Kalipada Das, and I. Das |
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Scopus |
|
Yes |
|
|
|
Document
|
2021 |
Real-space imaging of magnetic phase transformation in single-crystalline Sm-Ca-Sr based manganite compound |
J. Phys.: Condens. Matter |
33 |
D. Mazumdar, R. Rawat, S. Banik, Kalipada Das, and I. Das |
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Scopus |
|
Yes |
|
|
|
Document
|
2021 |
Experimental observation of antiferromagnetic correlation between blocked spins in the nanocrystalline La0.45Ca0.55MnO3 compound at low temperature |
J. Magn. Magn.Mater. |
528 |
Kalipada Das, D. Mazumdar, P. Dasgupta, S. Kumar, and I. Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2021 |
"Designing reversible multi-level resistance states
in a half-doped manganite" |
Euro Physics Letters |
133 |
S. Banik, Kalipada Das, K. Pradhan, and I. Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2021 |
Study of modification of the magnetic and magnetocaloric properties with Gd doping in Sm-Sr based manganite compounds: Influence of short range charge-orbital ordering |
J. Magn. Magn.Mater. |
519 |
D. Mazumdar, Kalipada Das, and I. Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2020 |
Impact of weak ferromagnetism on the magnetocaloric properties of A‑site‑doped PrMnO3 compound |
Journal of Materials Science: Materials in Electronics |
31 |
D. Mazumdar, Kalipada Das, Pintu Sen, and I. Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2020 |
Study of magnetic and magneto-transport properties of nanocrystalline Nd0.5Ca0.5MnO3 compound: Observation of large magnetoresistance |
J. Magn. Magn.Mater. |
501 |
KalipadaDas, S. Mandal, D. Mazumdar, P. Sen, and I.Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2020 |
Effect of short range ferromagnetic interaction on magnetocaloric properties of polycrystalline Eu0.55Sr0.45MnO3 compound |
J. Magn. Magn.Mater. |
502 |
D. Mazumdar, Kalipada Das, and I. Das |
|
|
|
No |
|
|
|
Document
|
2020 |
Generation of complex magnetic phase diagram of single crystalline Sm0.50Ca0.25Sr0.25MnO3 compound using magnetocaloric effect |
J. Magn. Magn.Mater. |
497 |
D. Mazumdar, Kalipada Das, S. Roy, and I. Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2020 |
Study of magnetocaloric effect and critical exponents in polycrystalline La0.4Pr0.3Ba0.3MnO3 compound |
Journal of Applied Physics |
127 |
D. Mazumdar, Kalipada Das, and I. Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2019 |
Magnetic and magnetocaloric properties of polycrystalline Pr0.55(Ca0.75Sr0.25)0.45MnO3 compound: Observation of large inverse magnetocaloric effect |
J. Magn. Magn.Mater. |
485 |
Kalipada Das, and P. Sen |
|
Scopus |
|
Yes |
|
|
|
Document
|
2019 |
Enhancement of magnetoresistance and magnetocaloric effect at room temperature in polycrystalline Pr0.8−xLaxSr0.2MnO3 (x = 0.2) compound |
J. Magn. Magn.Mater. |
490 |
S. Banik, Kalipada Das, and I. Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2019 |
Investigation of size-dependent magnetic ordering in charge ordered antiferromagnetic nanoparticles via magnetocaloric effect |
J. Magn. Magn.Mater. |
487 |
Kalipada Das, N. Banu, I. Das , and B. N. Dev |
|
Scopus |
|
Yes |
|
|
|
Document
|
2019 |
Observation of radiation enhanced phase formation and subsequent dissolution at very high doses in Ar9+ ion irradiated Ti-modified stainless steel |
Radiation Physics and Chemistry |
165 |
N. Gayathri, Kalipada Das, P. Mukherjee, R. Menon, and P. Y. Nabhiraj |
|
Scopus |
|
Yes |
|
|
|
Document
|
2018 |
Huge magnetoresistance and ultra-sharp metamagnetic transition in polycrystalline Sm0.5Ca0.25Sr0.25MnO3 |
NPG-Asia Materials |
10 |
S. Banik, Kalipada Das, T. Paramanik, N. P. Lalla, B. Satpati, K. Pradhan and I. Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2018 |
Effect of Ar9+ irradiation on Zr-1Nb-1Sn-0.1Fe alloy characterized by Grazing Incidence X-ray diffraction technique |
Radiation Physics and Chemistry |
144 |
A. Dutta, Kalipada Das, N. Gayathri, R. Menon, P. Y. Nabhiraj and P. Mukherjee |
|
Scopus |
|
Yes |
|
|
|
Document
|
2018 |
Significantly large magnetocaloric effect in polycrystalline La0.83Sr0.17MnO3 near room temperature |
Physica-B |
545 |
Kalipada Das, N. Banu, I. Das and B. N. Dev |
|
Scopus |
|
Yes |
|
|
|
Document
|
2018 |
Large magnetocaloric effect in geometrically frustrated polycrystalline ErMnO3 compound at cryogenic temperature |
Physica-B |
533 |
Kalipada Das, S. Banik and I. Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2018 |
Magnetocaloric effect study of Pr0.67Ca0.33MnO3-La0.67Sr0.33MnO3 nanocomposite |
J. Magn. Magn.Mater. |
449 |
Kalipada Das, R. Roy Chowdhury, S. Midda, Pintu Sen and I. Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2018 |
Magnetocaloric effect at low temperature in robust charge ordered Sm1−xCaxMnO3 compounds |
J. Magn. Magn.Mater. |
458 |
Kalipada Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2018 |
A comparative study of polaronic transport in paramagnetic state of bulk and nanocrystalline La0.46Ca0.54MnO3 compound |
Journal of Applied Physics |
124 |
Kalipada Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2018 |
Magnetocaloric effect of polycrystalline Sm0.5Ca0.5MnO3 compound: Investigation of low temperature magnetic state |
Solid State communication |
274 |
Kalipada Das, N. Banu, I. Das and B. N. Dev |
|
Scopus |
|
Yes |
|
|
|
Document
|
2018 |
Magnetic and magnetocaloric properties in polycrystalline La0.2Gd0.5Ba0.3MnO3 compound |
J. Magn. Magn.Mater. |
446 |
S. Saha, Kalipada Das, S. Bandyopadhyay and I. Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2017 |
Magnetocaloric effect study of polycrystalline Y0.5Ca0.5MnO3 compound: Investigation of the low temperature magnetic state |
J. Magn. Magn.Mater. |
442 |
Kalipada Das |
|
Scopus |
|
Yes |
|
|
|
|
2017 |
Role of stability of charge ordering in exchange bias effect in doped manganites |
Scientific Reports |
7 |
P. Dasgupta, Kalipada Das, S. Pakhira, C. Mazumdar, S. Mukherjee and A. Poddar |
|
Scopus |
|
Yes |
|
|
|
|
2017 |
"The study of magnetic and magnetocaloric properties of polycrystalline La0.48Ca0.52MnO3compound at low temperature: Influence of Glassy Magnetic state |
Physica-B |
510 |
Kalipada Das, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2017 |
Large magnetoresistance and spin glass behavior of nanocrystalline compound La0.48Ca0.52MnO3 at low temperature |
J. Magn. Magn.Mater. |
439 |
Kalipada Das, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2017 |
Magnetic field induced low temperature upturn of magnetization in highly Ca-doped La0.1875Ca0.8125MnO3 polycrystalline compound |
J. Magn. Magn.Mater. |
432 |
Kalipada Das, P. Dasgupta and A. Poddar |
|
Scopus |
|
Yes |
|
|
|
|
2017 |
A comparative study of magnetic field induced meta-magnetic transition in nanocrystalline and bulk Pr0.65(Ca0.7Sr0.3)0.35MnO3 compound |
J. Magn. Magn.Mater. |
432 |
S. Saha, Kalipada Das, S. Bandyopadhyay and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2017 |
A-site cationic disorder induced significantly large magnetoresistance in polycrystalline La0.2Gd0.5Ba0.3MnO3 compound |
J. Magn. Magn.Mater. |
442 |
S. Saha, Kalipada Das, S. Bandyopadhyay and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2017 |
Investigation of magnetic and magneto-transport properties of ferromagnetic-charge ordered core-shell nanostructures |
Journal of Applied Physics |
122 |
Kalipada Das |
|
Scopus |
|
Yes |
|
|
|
|
2017 |
Magnetic and magnetoresistive properties of half-metallic ferromagnetic and charge ordered modified ferromagnetic manganite nanoparticles |
Journal of Applied Physics |
121 |
Kalipada Das and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2017 |
Magnetocaloric effect study of ferromagnetic-charge ordered core-shell type manganite nanostructures |
J. Magn. Magn.Mater. |
436 |
Kalipada Das and I. Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2017 |
Enhancement of the magnetoresistive property by introducing disorder in the (La1−xYx)0.7Ca0.3MnO3 compound |
RSC Advances |
7 |
S. Banik, Kalipada Das, and I. Das |
|
Scopus |
|
Yes |
|
|
|
Document
|
2016 |
Size-induced modification of magneto-transport properties in nanocrystalline Sm0.5Ca0.5MnO3 compound |
J. Magn. Magn.Mater. |
403 |
S. Banik, Kalipada Das and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2016 |
Significant enhancement of magnetoresistance with the reduction of particle size in nanometer scale |
Scientific Reports |
6 |
Kalipada Das, P. Dasgupta, A. Poddar, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2016 |
Large magnetocaloric effect near room temperature in polycrystalline (La0.7Y0.3)0.7Sr0.3MnO3 compound |
Material Research Bulletin |
73 |
Kalipada Das, S. Banik, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2016 |
Giant magnetocaloric effect in amorphous gadolinium oxide nano tubes at cryogenic temperature |
J. Magn. Magn.Mater. |
417 |
R. Paul, T. Paramanik, Kalipada Das, P. Sen, B. Satpati, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2016 |
Giant enhancement of magnetocaloric effect at room temperature by the formation of nanoparticle of La0.48Ca0.52MnO3compound |
Journal of Applied Physics |
119 |
Kalipada Das, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2015 |
A comparative study of magnetic training effect in bulk and nanocrystalline La0.46Ca0.54MnO3 compound |
Journal of Applied Physics |
118 |
Kalipada Das, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2015 |
Training effect induced by magnetic field cycling in ferromagnetic rich phase separated nanocomposite |
J. Magn. Magn.Mater. |
395 |
Kalipada Das, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2015 |
Magnetic field induced insulator-metal transition in nanocrystalline Pr0.67Ca0.33MnO3 compounds: Evidence of large temperature co-efficient of resistance |
Journal of Applied Physics |
117 |
Kalipada Das, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2015 |
The effect of artificial grain boundaries on magneto-transport propertiesof charge ordered-ferromagnetic nanocomposites |
RSC Advances |
5 |
Kalipada Das, B. Satpati, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2015 |
Generation of magnetic phase diagram of HoRu2Si2 using magnetocaloric effect |
J. Magn. Magn.Mater. |
381 |
T. Paramanik, Kalipada Das, T. Samanta, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2015 |
Large magnetocaloric effect in Ln0.5Ca0.5MnO3 (Ln = Gd, Dy) compounds: Consequence of magnetic precursor effect of rare earth ions |
J. Magn. Magn.Mater. |
374 |
Kalipada Das, T. Paramanik, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2014 |
Direct experimental evidence of multiferroicity in a nanocrystalline Zener polaron ordered manganite |
Phys. Rev. B |
90 |
V. K. Shukla, S. Mukhopadhyay, Kalipada Das, A. Sarma and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2014 |
Observation of large magnetocaloric effect in HoRu2Si2 |
Journal of Applied Physics |
115 |
T. Paramanik, Kalipada Das, T. Samanta, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2013 |
Giant enhancement of magnetoresistance in core-shell ferromagnetic charge ordered nano structures |
Applied Physics Letter |
103 |
Kalipada Das, R. Rawat, B. Satpati, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2012 |
Experimental and theoretical investigation of magnetocaloric behavior in HoRu2Si2 |
AIP Conf. Proc. |
1447 |
T. Paramanik, Kalipada Das, T. Samanta, and I. Das |
|
|
|
No |
|
|
|
|
2012 |
Giant enhancement of magnetoresistance of nanocrystalline La0.45Ca0.55MnO3 |
AIP Conf. Proc. |
1447 |
Kalipada Das, T. Samanta, A. Poddar, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|
2012 |
The metal insulator transition in nanocrystalline Pr0.67Ca0.33MnO3: the correlation between super cooling and kinetic arrest |
J. Phys.: Condens. Matter |
24 |
R. Rawat, P. Chaddah, P. Bag, Kalipada Das, and I. Das |
|
Scopus |
|
Yes |
|
|
|
|