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Tetrahydroxyborate

Ion


Ion

Tetrahydroxidoborate(1-)

Tetrahydroxyborate is an inorganic anion with the chemical formula or . It contributes no colour to tetrahydroxyborate salts. It is found in the mineral hexahydroborite, , originally formulated . It is one of the boron oxoanions, and acts as a weak base. The systematic names are tetrahydroxyboranuide (substitutive) and tetrahydroxidoborate(1−) (additive). It can be viewed as the conjugate base of boric acid.

Structure

Tetrahydroxyborate has a symmetric tetrahedral geometry, isoelectronic with the hypothetical compound orthocarbonic acid ().

Chemical properties

Basicity

Tetrahydroxyborate acts as a weak Brønsted–Lowry base because it can assimilate a proton (), yielding boric acid with release of water: : + + It can also release a hydroxide anion , thus acting as a classical Arrhenius base: : + (pK = 9.14 to the left) Thus, when boric acid is dissolved in pure (neutral) water, most of it will exist as tetrahydroxyborate ions.

With diols

In aqueous solution, the tetrahydroxyborate anion reacts with cis-vicinal diols (organic compounds containing similarly-oriented hydroxyl groups in adjacent carbon atoms), ) such as mannitol, sorbitol, glucose and glycerol, to form anion esters containing one or two five-member rings.

For example, the reaction with mannitol can be written as : + + 2 : + + 2 Giving the overall reaction : + 2 + 4

These mannitoborate esters are fairly stable and thus depletes the tetrahydroxyborate from the solution.

The addition of mannitol to an initially neutral solution containing boric acid or borates lowers the pH enough for the be titrated by a strong base as NaOH, including with an automated a potentiometric titrator. This is a reliable method to assay the amount of borate content present in the solution.

Other chemical reactions

Upon treatment with a strong acid, a metal tetrahydroxyborate converts to boric acid and the metal salt.

Oxidation of tetrahydroxyborate gives the perborate anion : : 2 + 2 → + 2

When heated to a high temperature, tetrahydroxyborate salts decompose to produce metaborate salts and water, or to produce boric acid and a metal hydroxide: :n → () + 2n : → + HO−

Production

Tetrahydroxyborate salts are produced by treating boric acid with an alkali such as sodium hydroxide, with catalytic amounts of water. Other borate salts may be obtained by altering the process conditions.

Uses

Tetrahydroxyborate can be used as a cross-link in polymers.

Occurrence

The tetrahydroxyborate anion is found in Na[B(OH)4], Na2[B(OH)4]Cl and CuII[B(OH)4]Cl.

File:Sodium-tetrahydroxyborate-xtal-3D-balls.png|ball-and-stick model of the crystal structure of sodium tetrahydroxyborate File:Sodium-tetrahydroxyborate-xtal-3D-SF.png|space-filling model of the crystal structure of sodium tetrahydroxyborate

References

References

  1. "Tetrahydroxoborate(1−) (CHEBI:41132)". European Bioinformatics Institute.
  2. Glossary of Geology,5th edition, 2005, {{ISBN. 978-0922152766 ed. by Julia A. Jackson, James P. Mehl, Klaus K. E. Neuendorf, American Geological Institute
  3. (June 1993). "Structure of sodium tetrahydroxyborate". Acta Crystallographica C.
  4. {{VogelQuantitative6th
  5. (1969). "NIST Special Publication". U.S. Government Printing Office.
  6. {{Greenwood&Earnshaw
  7. Lyman F. Kebler (1894): "On the interaction of borax, carbonates and polyhydric alcohols; also on the composition of borax". ''Journal of the Franklin Institute'', volume 138, issue 3, pages 236-239. {{doi. 10.1016/0016-0032(94)90292-5
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