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Papiya Nandy

Researcher at Jadavpur University

Publications -  129
Citations -  1955

Papiya Nandy is an academic researcher from Jadavpur University. The author has contributed to research in topics: Mullite & Dielectric. The author has an hindex of 20, co-authored 129 publications receiving 1688 citations. Previous affiliations of Papiya Nandy include Natural Resources Research Institute.

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Beneficial role of carbon nanotubes on mustard plant growth: an agricultural prospect

TL;DR: In this paper, the authors report the beneficial effect of multi-walled carbon nanotubes (MWCNTs) having diameter of ~30 nm on Brassica juncea (mustard) seeds.
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Enhancement of β phase crystallization and dielectric behavior of kaolinite/halloysite modified poly(vinylidene fluoride) thin films

TL;DR: In this article, a solution-casting method was used to investigate the electroactive β-phase formation mechanism and the dielectric properties of the clay polymer nanocomposite (CPN) films.
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In situ synthesis and antibacterial activity of copper nanoparticle loaded natural montmorillonite clay based on contact inhibition and ion release

TL;DR: In this article, a copper nanoparticle based clay composite has been synthesized by in situ reduction of a copper ammonium complex ion and characterized by different analytical instruments, which shows good promise for use in therapeutic applications.
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Effect of in situ synthesized Fe2O3 and Co3O4 nanoparticles on electroactive β phase crystallization and dielectric properties of poly(vinylidene fluoride) thin films.

TL;DR: Results confirmed that the electroactive β phase crystallization in the PVDF matrix is due to the fast nucleating or catalytic effect of the in situ NPs and a large dielectric constant of the thin films.
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In situ synthesis of Ni(OH)2 nanobelt modified electroactive poly(vinylidene fluoride) thin films: remarkable improvement in dielectric properties

TL;DR: Strong interaction via hydrogen bonds between Ni(OH)2 NBs and the PVDF matrix is the main reason for enhancement in β phase crystallization and improved dielectric properties.