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Structural mechanisms for light-element variations in tourmaline

F. C. Hawthorne

Open publisher page 148 citations

Abstract

It is now well known that Si, B and OH+F are variable components of tourmaline, and yet the stereochemical details of their variation in the tourmaline structure are still not well characterized or understood. Application of the valence-sum rule of bond-valence theory to questions of short-range atomic arrangements shows that there are considerable stereochemical constraints associated with the variation of Si, B and OH+F in the tourmaline structure. The occurrence of a trivalent cation (Al, B) at the T site must be locally associated with the occurrence of trivalent cations (Al, Fe (super 3+) ) at the neighboring Y and Z sites, and possibly with Ca at the neighboring X site. In Li-free tourmaline, the occurrence of O (super 2-) at O(1) (i.e., OH+F 2 - at O(1) must be locally associated with 3Al at the adjacent 3Y sites. These requirements provide stringent constraints on the possible substitution schemes whereby additional O (super 2-) (i.e, a deficiency in OH+F) is incorporated into tourmaline.

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What this paper is about

It is now well known that Si, B and OH+F are variable components of tourmaline, and yet the stereochemical details of their variation in the tourmaline structure are still not well characterized or understood. Application of the valence-sum rule of bond-valence theory to questions of short-range atomic arrangements shows that there are considerable stereochemical constraints associated with the variation of Si, B and OH+F in the tourmaline structure. The occurrence of a trivalent cation (Al, B) at the T site must be locally associated with the occurrence of trivalent cations (Al, Fe (super 3+) ) at the neighboring Y and Z sites, and possibly with Ca at the neighboring X site. In Li-free tourmaline, the occurrence of O (super 2-) at O(1) (i.e., OH+F 2 - at O(1) must be locally associated with 3Al at the adjacent 3Y sites. These requirements provide stringent constraints on the possible substitution schemes whereby additional O (super 2-) (i.e, a deficiency in OH+F) is incorporated into tourmaline.

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Available abstract

It is now well known that Si, B and OH+F are variable components of tourmaline, and yet the stereochemical details of their variation in the tourmaline structure are still not well characterized or understood. Application of the valence-sum rule of bond-valence theory to questions of short-range atomic arrangements shows that there are considerable stereochemical constraints associated with the variation of Si, B and OH+F in the tourmaline structure. The occurrence of a trivalent cation (Al, B) at the T site must be locally associated with the occurrence of trivalent cations (Al, Fe (super 3+) ) at the neighboring Y and Z sites, and possibly with Ca at the neighboring X site. In Li-free tourmaline, the occurrence of O (super 2-) at O(1) (i.e., OH+F 2 - at O(1) must be locally associated with 3Al at the adjacent 3Y sites. These requirements provide stringent constraints on the possible substitution schemes whereby additional O (super 2-) (i.e, a deficiency in OH+F) is incorporated into tourmaline.

Key concepts: Tourmaline, Valence (chemistry), Crystallography, Chemistry, Mineralogy, Materials science, Metallurgy, Organic chemistry

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