2003American MineralogistRequires access

Order-disorder approach to calcioaravaipaite, [PbCa 2 Al(F,OH) 9 ]: The crystal structure of the triclinic MDO polytype

Anthony R. Kampf, Stefanο Merlino, Marco Pasero

Open publisher page 3 citations

Abstract

The crystal structure of calcioaravaipaite, PbCa 2 Al(F,OH) 9 , was initially solved by direct methods in the monoclinic space group A2/m (R = 12.4%). Further study demonstrated the OD nature of the structure, and showed that the crystal was twinned. The structure was solved in the triclinic space group C1̅ , a = 7.722(3), b = 7.516(3), c = 12.206(4) Å, α = 98.86(1), β = 96.91(1), γ = 90.00(1)°, V = 694.8(3) Å 3 , Z = 4, yielding R = 5.1% for 1420 reflections with F o > 4σ(F o ). Calcioaravaipaite belongs to a family of order-disorder (OD) structures formed by equivalent layers of symmetry C2/m. Two maximum-degree-of-order (MDO) polytypes are possible. MDO1 results from a regular alternation of stacking operators 2 1/2 and 2 -1/2 and yields a monoclinic structure with C2/c, a = 7.72, b = 7.52, c = 24.12 Å, β = 96.99°. MDO2 results from the sequence 2 1/2 / 2 1/2 / 2 1/2 /… and yields a triclinic structure with a = 7.72, b = 7.52, c = 12.21 Å, α = 98.86, β = 96.91, γ = 90.00°. The structure of calcioaravaipaite is comprised of two kinds of alternating polyhedral slabs parallel to (001). Slab 1 consists of a fluorite-like double layer of edge-sharing (CaF 8 ) distorted cubes and slab 2 is a composite of face- and edge-sharing (PbF 12 ) polyhedra and outlying (AlF 6 ) octahedra, the latter sharing faces and edges with the (PbF 12 ) polyhedra, but no elements with one another. Aravaipaite and calcioaravaipaite share a common fluorite-type layer; however, in aravaipaite the presence of Pb 2+ rather than Ca 2+ in this layer results in slabs of strikingly different polyhedral configuration.

About this research paper

What this paper is about

The crystal structure of calcioaravaipaite, PbCa 2 Al(F,OH) 9 , was initially solved by direct methods in the monoclinic space group A2/m (R = 12.4%). Further study demonstrated the OD nature of the structure, and showed that the crystal was twinned. The structure was solved in the triclinic space group C1̅ , a = 7.722(3), b = 7.516(3), c = 12.206(4) Å, α = 98.86(1), β = 96.91(1), γ = 90.00(1)°, V = 694.8(3) Å 3 , Z = 4, yielding R = 5.1% for 1420 reflections with F o > 4σ(F o ). Calcioaravaipaite belongs to a family of order-disorder (OD) structures formed by equivalent layers of symmetry C2/m. Two maximum-degree-of-order (MDO) polytypes are possible. MDO1 results from a regular alternation of stacking operators 2 1/2 and 2 -1/2 and yields a monoclinic structure with C2/c, a = 7.72, b = 7.52, c = 24.12 Å, β = 96.99°. MDO2 results from the sequence 2 1/2 / 2 1/2 / 2 1/2 /… and yields a triclinic structure with a = 7.72, b = 7.52, c = 12.21 Å, α = 98.86, β = 96.91, γ = 90.00°. The structure of calcioaravaipaite is comprised of two kinds of alternating polyhedral slabs parallel to (001). Slab 1 consists of a fluorite-like double layer of edge-sharing (CaF 8 ) distorted cubes and slab 2 is a composite of face- and edge-sharing (PbF 12 ) polyhedra and outlying (AlF 6 ) octahedra, the latter sharing faces and edges with the (PbF 12 ) polyhedra, but no elements with one another. Aravaipaite and calcioaravaipaite share a common fluorite-type layer; however, in aravaipaite the presence of Pb 2+ rather than Ca 2+ in this layer results in slabs of strikingly different polyhedral configuration.

Why it matters

OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The crystal structure of calcioaravaipaite, PbCa 2 Al(F,OH) 9 , was initially solved by direct methods in the monoclinic space group A2/m (R = 12.4%). Further study demonstrated the OD nature of the structure, and showed that the crystal was twinned. The structure was solved in the triclinic space group C1̅ , a = 7.722(3), b = 7.516(3), c = 12.206(4) Å, α = 98.86(1), β = 96.91(1), γ = 90.00(1)°, V = 694.8(3) Å 3 , Z = 4, yielding R = 5.1% for 1420 reflections with F o > 4σ(F o ). Calcioaravaipaite belongs to a family of order-disorder (OD) structures formed by equivalent layers of symmetry C2/m. Two maximum-degree-of-order (MDO) polytypes are possible. MDO1 results from a regular alternation of stacking operators 2 1/2 and 2 -1/2 and yields a monoclinic structure with C2/c, a = 7.72, b = 7.52, c = 24.12 Å, β = 96.99°. MDO2 results from the sequence 2 1/2 / 2 1/2 / 2 1/2 /… and yields a triclinic structure with a = 7.72, b = 7.52, c = 12.21 Å, α = 98.86, β = 96.91, γ = 90.00°. The structure of calcioaravaipaite is comprised of two kinds of alternating polyhedral slabs parallel to (001). Slab 1 consists of a fluorite-like double layer of edge-sharing (CaF 8 ) distorted cubes and slab 2 is a composite of face- and edge-sharing (PbF 12 ) polyhedra and outlying (AlF 6 ) octahedra, the latter sharing faces and edges with the (PbF 12 ) polyhedra, but no elements with one another. Aravaipaite and calcioaravaipaite share a common fluorite-type layer; however, in aravaipaite the presence of Pb 2+ rather than Ca 2+ in this layer results in slabs of strikingly different polyhedral configuration.

Key concepts: Triclinic crystal system, Monoclinic crystal system, Crystallography, Crystal structure, Group (periodic table), Crystal (programming language), Order (exchange), Space (punctuation)

Related papers

Back to paper searchBrowse research topicsOriginal source
Order-disorder approach to calcioaravaipaite, [PbCa 2 Al(F,OH) 9 ]: The crystal structure of the triclinic MDO polytype — Research Paper | ScholarLens