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February 11, 2026Zeitschrift für anorganische und allgemeine Chemie2 citationsOpen Access

Polymorphism in Tetramethylammonium Selenocyanate – Crystal Structures of α ‐, β ‐, and γ ‐NMe 4 SeCN

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SRSven RingelbandJPJonathan PfeifferHGHennes Günther

Key Points

  • This research aims to explore the polymorphic nature of tetramethylammonium selenocyanate and characterize its crystal structures.
  • Characterization of polymorphs α‐, β‐, and γ‐[NMe4][SeCN] using X-ray crystallography.
  • Analysis of space groups and crystal dimensions at different temperatures.
  • Use of Bärnighausen formalism to show relationships among structures.
  • α‐[NMe4][SeCN] crystallizes in the monoclinic system with space group P21/c.
  • β‐[NMe4][SeCN] adopts space group Pnma, exhibiting different lattice parameters.
  • γ‐[NMe4][SeCN] is identified with space group Pmmn, with a smaller volume compared to other forms.
  • All polymorphs correlate through direct group‐subgroup relationships, sharing a CsCl-type aristotype.

Abstract

In the solid state, tetramethylammonium selenocyanate, NMe 4 SeCN, is polymorphic. α ‐NMe 4 SeCN crystallizes in the monoclinic system with space group P 2 1 / c (at 100 K, No. 14, a = 7.8656(5) Å, b = 8.6002(4) Å, c = 11.9513(8) Å, β = 95.374(5)°, V = 802.15(3) Å 3 ), β ‐NMe 4 SeCN with space group Pnma (at 348 K, No. 62, a = 12.1914(12) Å, b = 7.7491(8) Å, c = 8.9840(8) Å, V = 848.74(14) Å 3 ), and γ ‐NMe 4 SeCN with space group Pmmn (at 388 K, No. 59, a = 7.529(2) Å, b = 9.586(3) Å, c = 5.9535(18) Å, V = 429.68(20) Å 3 ). All structures are related by direct group‐subgroup relationships, which are shown with the Bärnighausen formalism. Furthermore, all NMe 4 SeCN polymorphs, as well as some related compounds, share the CsCl‐type as the common aristotype.

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Cite This Study

Ringelband et al. (2026) studied this question.

synapsesocial.com/papers/698c1c8e267fb587c655f116https://doi.org/10.1002/zaac.202500182
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