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English
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For å registrere i Cristin må du være vitenskapelig eller administrativt ansatt.
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2019
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1. |
Adak, Mrinal Kanti; Mukherjee, Arnab; Chowdhury, Anirban; Khatun, Julekha; Dhak, Prasanta; Dhak, Debasis. Dielectric anomaly, diffusivity and impedance behavior of transition metal substituted SrBi2NbTaO9 ferroelectric nano-ceramics prepared by chemical route. Physica. B, Condensed matter 2019 ;Volum 553. s. 26-35 UiO
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2. |
Adak, Mrinal Kanti; Mukherjee, Arnab; Chowdhury, Anirban; Khatun, Julekha; Dhak, Prasanta; Dhak, Debasis. Effect of Cu2+ substitution on the relaxor behavior of BaBi2Nb2O9 ferroelectric nanoceramics prepared by chemical route. Materials Research Express 2019 ;Volum 6.(2) s. 1-17 UiO
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3. |
Bundli, Silje; Dhak, Prasanta; Jensen, Martin; Gunnæs, Anette Eleonora; Nguyen, Phuong Dan; Fjellvåg, Helmer; Sjåstad, Anja Olafsen. Controlled alloying of Pt-Rh nanoparticles by the polyol approach. Journal of Alloys and Compounds 2019 ;Volum 779. s. 879-885 UiO
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4. |
Khatun, Julekha; Adak, Mrinal Kanti; Dhak, Prasanta; Ghorai, Uttam K; Dhak, Debasis. Influence of La3+ and V5+ doping on the polarization and impedance behaviour of BaBi2Nb2O9 nano-ceramics prepared by chemical route. Journal of materials science. Materials in electronics 2019 ;Volum 30.(7) s. 7065-7079 UiO
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2017
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5. |
Sjåstad, Anja Olafsen; Zacharaki, Eirini; Bundli, Silje; Jensen, Martin; Kalyva, Maria Evangelou; Dhak, Prasanta; Kooyman, Patricia J.; Bremmer, Marien G.; Slawiniski, Wojciech Andrzej; Fjellvåg, Helmer. Nanoparticles for heterogeneous catalysis of industrial relevant processes. ICAFM2017; 2017-01-06 - 2017-01-08 UiO
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2016
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6. |
Adak, Mrinal Kanti; Dhak, Prasanta; Kundu, Atreyee; Dhak, Debasis. Investigation of density of states and electrical properties of chemically synthesized Ba0.5Co0.5Bi2NbTaO9 nanoceramics. Advanced Materials Letters 2016 ;Volum 7.(11) s. 852-860 UiO
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7. |
Adak, Mrinal Kanti; Mondal, Shyam S.; Dhak, Prasanta; Sen, Shrabanee; Dhak, Debasis. Investigation of density of states and electrical properties of Ba0.5Co0.5Bi2Nb2O9 nanoceramics prepared by chemical route. Journal of materials science. Materials in electronics 2016 ;Volum 28.(6) s. 4676-4683 UiO
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