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February 28, 2026Acta Crystallographica Section B Structural Science Crystal Engineering and Materials0 citationsOpen Access

Structure and properties of (Nd,Sr)(Al,Ta)O 3 (NSAT) substrate crystals

RBRoberts BlukisCRChristian RhodeTRT. Remmele

Key Points

  • To analyze the structure and properties of the substrate material (Nd,Sr)(Al,Ta)O3 (NSAT).
  • Utilized powder and single-crystal X-ray diffraction for structural analysis.
  • Applied transmission electron microscopy for detailed imaging.
  • Conducted infrared and ultraviolet-visible ellipsometry for optical characterization.
  • Employed infrared and Raman spectroscopy for vibrational property assessment.
  • NSAT substrate exhibits a simple cubic perovskite structure with a lattice parameter of 3.8427 Å.
  • Nanoscale domains are observed, reflecting a superstructure with a doubled lattice parameter at 7.6855 Å.
  • Absorption bands align with structural expectations, but peak widths suggest local deviations.
  • The lattice parameter remains stable, indicating inhomogeneity will not significantly impact substrate applications.

Abstract

An emerging cubic substrate material (Nd,Sr)(Al,Ta)O3 (NSAT) has been analysed using powder and single-crystal X-ray diffraction, transmission electron microscopy, infrared (IR) and ultraviolet-visible range ellipsometry as well as IR- and Raman spectroscopies. Based on this experimental characterization, the structure and vibrational properties are described with improved understanding. On a large length scale the NSAT substrate is found to have a basic simple cubic perovskite structure (a = 3.8427 Å) that, on a small length scale, is subdivided into superstructure ordered nanoscale domains with doubled lattice (unit-cell) parameter (a = 7.6855 Å). Ellipsometry and vibrational spectroscopy show absorption bands consistent with the expected structure type, however, the peak widths indicate significant local deviations from the perfectly ordered superstructure or ideal solid solution. Since the lattice parameter is unaffected, the observed inhomogeneity is not expected to affect the use of NSAT as a substrate for most applications.

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Cite This Study

Blukis et al. (2026) studied this question.

synapsesocial.com/papers/69a285da0a974eb0d3c00d27https://doi.org/10.1107/s2052520626000703
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