Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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Kumar, Uday

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in Cooperation with on an Cooperation-Score of 37%

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Publications (4/4 displayed)

  • 2023Effect of Pulsation in Microstructure and Mechanical Properties of Titanium Alloy-Annealed Welded Joints at Different Temperatures5citations
  • 2022Fractography analysis into low-C steel undergone through various destructive mechanical tests4citations
  • 2019Revised crystal structure and electronic properties of Ba(Fe$_{1/2}$Nb$_{1/2}$)O$_{3}$ ceramicscitations
  • 2013Effects of octahedral tilting on the electronic structure and optical properties of $d^0$ double perovskites $mathbf{rm A_2ScSbO_6}$ ($mathbf{rm A=Sr, Ca}$)citations

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Chattopadhyaya, Somnath
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Sharma, Shubham
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  • Seikh, Asiful
  • Chattopadhyaya, Somnath
  • Agrawal, Ashish
  • Kumar, Abhinav
  • Sharma, Shubham
  • Nagai, Kaori
  • Dwivedi, Shashi Prakash
  • Dewangan, Saurabh
  • Karthikeyan, B.
  • Raju, P. Venkateshwar
  • Singhal, Prakrit
  • Sarma, Partha Pratim
  • Kumar, M. Pradeep
  • Krishna, P. S. R.
  • Patra, N.
  • Bhattacharyya, Kaustava
  • Mandal, Golak K.
  • Bhattacharya, D.
  • Singh, B. K.
  • Himanshu, A. K.
  • Jha, S. N.
  • Shinde, A. B.
  • Richter, Manuel
  • Sinha, T. P.
  • Sen, Pintu
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document

Effects of octahedral tilting on the electronic structure and optical properties of $d^0$ double perovskites $mathbf{rm A_2ScSbO_6}$ ($mathbf{rm A=Sr, Ca}$)

  • Kumar, Uday
  • Richter, Manuel
  • Sinha, T. P.
  • Sen, Pintu
  • Himanshu, A. K.
Abstract

With increasing temperature, ${ Sr}_2{ ScSbO}_6$ undergoes three structural phase transitions at approximately ${ 400K}$, ${ 560K}$ and ${ 650K}$, leading to the following sequence of phases: $P2_1/nI2/mI4/mFm{3}m$, making it an ideal candidate to study the effects of octahedral tilting keeping other parameters fixed. To ascertain the isolated effects of octahedral distortions, the electronic and optical properties of the monoclinic $P2_1/n$ (at room temperature), monoclinic $I2/m$ (at ${ 430K}$), tetragonal $I4/m$ (at ${ 613K}$) and the cubic $Fm{3}m$ (at ${ 660K}$) phases have been studied in terms of the electronic structure, dielectric constant, optical conductivity and electron energy loss spectroscopy using density functional theory. ${ Ca}_2{ ScSbO}_6$, on the other hand, shows only a $P2_1/n$ phase at room temperature and its properties have been been compared with the corresponding ${ Sr}$ compound. UV-Vis spectroscopic studies of the optical properties of the room-temperature phase of these $d^0$ double perovskite have been performed and presence of large direct bandgap for both the compounds have been reported. The electronic bandgaps for the room temperature phases is found to be in good agreement with the corresponding experimental values obtained using the Kubelka-Munk function. Interestingly, in contrast to other Sc-based $d^0$ double perovskites, with increasing octahedral distortions, the effective $t_{ 2g}$ bandwidth remains unaffected while the states forming the band change due to changes in unit cell orientation, leading to small effects on the electronic and optical properties. <P />...

Topics
  • density
  • perovskite
  • impedance spectroscopy
  • compound
  • phase
  • theory
  • dielectric constant
  • phase transition
  • density functional theory
  • forming
  • electron energy loss spectroscopy
  • magnetic force microscope