Search Results - "Kathait, Gambheer Singh"

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  1. 1

    Dielectric, piezoelectric and energy storage properties of Ca, Zr and Sn doped (Ba1-xCax)(Ti0.85+xZr0.02Sn0.13-x)O3 lead-free ceramics at MPB for 0.05 ≤ x ≤ 0.09 by Singh Kathait, Gambheer, Maini, Surita

    “…[Display omitted] Lead-free piezoceramics based on the (Ba, Ca)(Zr, Ti)O3 (BCZT) system provide outstanding electromechanical characteristics for…”
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    Journal Article
  2. 2

    Multi-phase structure and optimal properties of (Ba1-xCax)(Ti0.93Zr0.01Sn0.06)O3 ceramics in the MPB range by Kathait, Gambheer Singh, Rohilla, Vishal, Maini, Surita

    Published in Journal of electroceramics (2024)
    “…(0.93 − x)BT − 0.01BZ − 0.06BS − xCT or (Ba 1-x Ca x )(Ti 0.93 Zr 0.01 Sn 0.06 )O 3 (abbreviated as BCZTS) ceramics were produced using the standard…”
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    Journal Article
  3. 3

    Effect of modified two-step sintering approaches on Potassium Tantalum Niobate-Barium Titanate (KTN-BT) ceramics and their dielectric and piezoelectric properties by Kathait, Gambheer, Panda, M.K., Panwar, N.S.

    Published in Science of sintering (2020)
    “…The Potassium Tantalum Niobate-Barium Titanate (KTN-BT) solid solution system ceramics with the composition 0.02K(Ta0.5Nb0.5)O3?0.98BaTiO3 were prepared by a…”
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    Journal Article
  4. 4

    Sintering effect on electrical properties and morphology of lead-free Na0.92k0.08NbO3 ceramics by Kathait, Gambheer, Panwar, N.S., Thapliyal, Prashant, Biswas, Don, Rohilla, Vishal, Singh, Surendra

    Published in Science of sintering (2019)
    “…Sodium potassium niobate (NKN) powders were synthesized by the solid-state reaction method. The NKN ceramics for composition Na0.92K0.08NbO3 (NKN) were then…”
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    Journal Article
  5. 5
  6. 6

    Two-step sintering affecting the escaping of Na and K and its impact on dielectric properties and morphology of lead-free Na0.92K0.08NbO3 ceramics by Kathait, Gambheer Singh, Panwar, N. S.

    Published in Ferroelectrics (02-01-2020)
    “…Lead-free Na x K 1- x NbO 3 (NKN) ceramics with x = 0.08 were prepared by a conventional solid-state reaction method. A two-step sintering technique was used…”
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    Journal Article
  7. 7
  8. 8

    Two-step sintering affecting the escaping of Na and K and its impact on dielectric properties and morphology of lead-free Na0.92K0.08NbO3 ceramics by Gambheer Singh Kathait, Panwar, N S

    Published in Ferroelectrics (01-01-2020)
    “…Lead-free NaxK1–xNbO3 (NKN) ceramics with x = 0.08 were prepared by a conventional solid-state reaction method. A two-step sintering technique was used for the…”
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    Journal Article
  9. 9

    Preparation of potassium tantalum niobate-barium titanate (KTN-BT) solid solution system ceramics and their piezoelectric properties by Kathait, Gambheer Singh, Panda, M. K., Panwar, N. S.

    Published in Ferroelectrics (25-01-2020)
    “…Potassium tantalum niobate (KTa 1-y Nb y O 3 , KTN)-barium titanate (BaTiO 3 , BT) solid solution system 0.02[KTN]-0.98[BT] ceramics with various…”
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    Journal Article
  10. 10

    Preparation of potassium tantalum niobate–barium titanate (KTN-BT) solid solution system ceramics and their piezoelectric properties by Gambheer Singh Kathait, Panda, M K, Panwar, N S

    Published in Ferroelectrics (01-01-2020)
    “…Potassium tantalum niobate (KTa1-yNbyO3, KTN)-barium titanate (BaTiO3, BT) solid solution system 0.02[KTN]-0.98[BT] ceramics with various microstructures were…”
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    Journal Article
  11. 11

    Converse piezoelectric properties of K and Na-modified (Na1-xKx) NbO3 lead free ceramics for x = 0.08 and 0.17 by Biswas, Don, Kathait, Gambheer Singh, Thapliyal, Prashant, Rohilla, Vishal, Singh, Surendra, Negi, Jyotsana

    Published in Ferroelectrics (03-10-2019)
    “…The effect of potassium content on the structure and piezoelectric properties of the Na 1−x K x NbO 3 (x = 0.08 and 0.17) (SPN) ceramics has been…”
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    Journal Article
  12. 12
  13. 13

    Influence of escaping of Na & K on physical properties in lead-free Na0.92K0.08NbO3 ceramic by Kathait, Gambheer Singh, Thapliyal, Prashant, Biswas, Don, Rohilla, Vishal, Singh, Surendra

    Published in Ferroelectrics (26-10-2019)
    “…Lead-free Na x K 1- x NbO 3 (NKN) ceramic with x = 0.08 was prepared by a conventional solid-state reaction method to investigate the influence of the Escaping…”
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    Journal Article
  14. 14
  15. 15

    Temperature dependence of dielectric properties of sodium potassium niobate ceramics for different values of x (Na 1−x K x NbO 3 ) by Biswas, Don, Kathait, Gambheer Singh, Thapliyal, Prashant, Rohilla, Vishal, Singh, Surendra

    Published in Ferroelectrics (04-04-2018)
    “…Dielectric constant, loss tangent and electrical conductivity of Na1-xKxNbO3 (X = 0.08 and 0.17)(SPN) ceramic pellets have been measured at 10, 100 and 1000…”
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    Journal Article
  16. 16

    Structural and dielectric properties of Lead Magnesium Niobate and Ti-doped Lead Magnesium Niobate at room temperature by Kashyap, Sidharth, Bhatt, S.C., Uniyal, Manish, Kathait, Gambheer Singh

    Published in Materials today : proceedings (2020)
    “…Lead based relaxor ferroelectric like Lead Magnesium Niobate and their binary solid solutions with Lead Titanate have great interest of research because of…”
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    Journal Article
  17. 17

    Sintering Effect on Electrical Properties and Morphology of Lead-Free Na^sub 0.92^K^sub 0.08^NbO^sub 3^ Ceramics by Kathait, Gambheer Singh, Panwar, N S, Thapliyal, Prashant, Biswas, Don, Rohilla, Vishal, Singh, Surendra

    Published in Science of sintering (01-01-2019)
    “…Sodium potassium niobate (NKN) powders were synthesized by the solid-state reaction method. The NKN ceramics for composition Na0.92K0.08NbO3 (NKN) were then…”
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    Journal Article
  18. 18

    Dielectric and Electromechanical Properties of Pyroelectric (Ba1-xCax)(Ti0.96Sn0.04)O3 (BCST) Ceramics for 0.032 ≤ x ≤ 0.064 by Kathait, Gambheer Singh, Biswas, Don, Negi, Sachin, Maini, Surita

    “…Using the solid-state reaction approach, the ferroelectric, piezoelectric, and energy storage characteristics of the (Ba 1-x Ca x )(Ti 0.96 Sn 0.04 )O 3 (BCST)…”
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    Conference Proceeding