1,3-Diphospha-2,4-diboretanes, or B
2P
2, is a class of 4-member
cyclic compounds
A cyclic compound (or ring compound) is a term for a compound in the field of chemistry in which one or more series of atoms in the compound is connected to form a ring. Rings may vary in size from three to many atoms, and include examples where al ...
of alternating
boron
Boron is a chemical element with the symbol B and atomic number 5. In its crystalline form it is a brittle, dark, lustrous metalloid; in its amorphous form it is a brown powder. As the lightest element of the ''boron group'' it has th ...
and
phosphorus
Phosphorus is a chemical element with the symbol P and atomic number 15. Elemental phosphorus exists in two major forms, white phosphorus and red phosphorus, but because it is highly reactive, phosphorus is never found as a free element on Ear ...
atoms. They are often found as dimers during the synthesis of
boraphosphenes (RB=PR').
Compounds can exhibit localized
singlet diradical
In chemistry, a diradical is a molecular species with two electrons occupying molecular orbitals (MOs) which are degenerate. The term "diradical" is mainly used to describe organic compounds, where most diradicals are extremely reactive and in ...
character (diradicaloid) between the boron atoms in the solution and solid state.
Synthesis
The first suggested synthesis of a diphosphadiboretane compound was with phosphinoarylboranes
dimerization
A dimer () (''wikt:di-, di-'', "two" + ''-mer'', "parts") is an oligomer consisting of two monomers joined by bonds that can be either strong or weak, Covalent bond, covalent or Intermolecular force, intermolecular. Dimers also have significant im ...
in 1961. Concurrently, a diphosphadiboretane was determined to be produced from the reaction with phosphinosilanes and boron halides.
The following
thermolysis
Thermal decomposition, or thermolysis, is a chemical decomposition caused by heat. The decomposition temperature of a substance is the temperature at which the substance chemically decomposes. The reaction is usually endothermic as heat is req ...
treatment formed boraphosphenes by cleavage of the σ P-Si bonds. Dimerization of these compounds are highly favored (upward to 90 kcal mol
-1), which results in isolated diphosphadiboretanes.
Alternative routes of synthesis utilizing facile
leaving groups have also been discovered including
hydrogen halide
In chemistry, hydrogen halides (hydrohalic acids when in the aqueous phase) are diatomic, inorganic compounds that function as Arrhenius acids. The formula is HX where X is one of the halogens: fluorine, chlorine, bromine, iodine, or astatine. A ...
and organylphosphane
elimination to obtain the monomer precursors. Treatment with boron halides with lithium phosphides have also been found to lead to monomers which then dimerize into the diphosphadiboretanes.
In 2002, a direct synthesis to a diphosphadiboretanediyl, a diphosphadiboretane derivative, was accomplished using 1,2-dichlorodiborane and a lithium phosphide reagent.
In 2021, it was found that the phosphination of
diboryne A diboryne in chemistry is a chemical compound containing a boron–boron triple bond. Such compounds are of fundamental importance in the study of chemical bonding, though only few have been reported. A diboryne stabilized by two carbon monoxide ...
using diphosphate would slowly convert to diphosphadiboretane in solution.
Structure and Bonding
X-ray crystallography
Diphosphadiboretanes can be isolated as single crystals suitable for
x-ray crystallography
X-ray crystallography is the experimental science determining the atomic and molecular structure of a crystal, in which the crystalline structure causes a beam of incident X-rays to diffract into many specific directions. By measuring the angles ...
.
The structure is found to be planar, with a near-square geometry. The B-B distance is found to be ranging from 2.57-2.71 Å, indicating a long B-B single bond. The phosphorus atoms adopt pyramidal geometries, which are preferred over a planar geometry and prevents π-bonding with the boron atoms.
Planar and bicyclic structure
The diphosphadiboretanediyl derivatives have a wider structural range, adopting planar and bicyclo
.1.0geometries, similar to diphosphacylobutanediyls.
These geometries can be modulated by changing the substituents on the boron or phosphorus atoms. This conversion is accompanied by lengthening and shortening of the B-B bond, respectively. Addition of more
steric
Steric effects arise from the spatial arrangement of atoms. When atoms come close together there is a rise in the energy of the molecule. Steric effects are nonbonding interactions that influence the shape ( conformation) and reactivity of ions ...
, protecting groups on the boron atoms and less steric groups on the phosphorus atoms favor the bicyclo
.1.0structure. The latter is due to reduction of
1,3-diaxial strain. Coplanar π-bonding to the boron atom and addition of
aromatic
In chemistry, aromaticity is a chemical property of cyclic ( ring-shaped), ''typically'' planar (flat) molecular structures with pi bonds in resonance (those containing delocalized electrons) that gives increased stability compared to satur ...
groups to the ring favors the bicyclo
.1.0structure with a B-B bond length shorten down to 1.83 Å.
Diradical
In the planar, diphosphadiboretanediyl structures, the substantially long B-B bond can be considered to experience
homolytic cleavage to form a localized singlet diradicaloid between the boron atoms.
The singlet state energy can be up to 20-35 kcal mol
-1 more stabilized than the
triplet state
In quantum mechanics, a triplet is a quantum state of a system with a spin of quantum number =1, such that there are three allowed values of the spin component, = −1, 0, and +1.
Spin, in the context of quantum mechanics, is not a mechanical ...
. Addition of π-donors on the boron atom is found to increase the singlet-triplet gap, while π-acceptors decrease it. The bicyclo
.1.0structure, with a shorter B-B bond, is considered to have less diradical character and more of a
closed-shell
In atomic physics and quantum chemistry, the electron configuration is the distribution of electrons of an atom or molecule (or other physical structure) in atomic or molecular orbitals. For example, the electron configuration of the neon atom ...
system.
Frontier orbitals
The HOMO of these diphosphadiboretanediyls consists of a π-orbital with strong boron p-orbital character.
This orbital is stabilized by the presence of π-overlap between the ''trans''-boron atoms (through-space interactions) as well as through-bond contributions by the σ* P-R orbitals. Due to the presence of the through-space interaction,
computational
Computation is any type of arithmetic or non-arithmetic calculation that follows a well-defined model (e.g., an algorithm).
Mechanical or electronic devices (or, historically, people) that perform computations are known as ''computers''. An espe ...
studies have determined these compounds to have significantly less diradical character than traditional organic diradicals. The LUMO is the antibonding π* B-B orbital.
Reactivity
Transition metals
Diphosphadiboretanes have been shown to behave as ligands to
metal-carbonyl complexes, forming boron-mononuclear, boron-binuclear, η
3, and η
4 architectures with displacement of CO ligands. If steric, amino-containing substituents on the boron are used, then a cycloreversion reaction happens. This results in the production of metal-stabilized boraphosphene. Cage compounds (B
2P
2M, M = Pd, Pt) have also be reported with η
2 coordination to the P atoms.
Oxidation
Synthesis of diphosphadiboretane from diboryne offers a two electron-rich compound, compared to diphosphadiboretanediyls.
These electrons can be readily
oxidized
Redox (reduction–oxidation, , ) is a type of chemical reaction in which the oxidation states of substrate change. Oxidation is the loss of electrons or an increase in the oxidation state, while reduction is the gain of electrons or a d ...
, affording the radical cation compound and diphsophadiboretanediyl compound. The radical cation is found to exhibit triplet state by
electronic paramagnetic resonance, accompanying with a shortening of the B-B bond (2.63 Å) and slight perturbance of planar, square structure. The diphosphadiboretanediyl compound is found to have a B-B bond of 2.12 Å and the transition to the bicyclo
.1.0structure.
Natural bond orbital analysis of phosphadiboretanediyl compound indicates a bent B-B bond with a small 3 kcal mol
-1 stabilization energy compared to the planar structure.
Diradical activity
Diphosphadiboretanediyls exhibits reactivity similar to
radicals, behaving as diradical intermediates.
The compounds have been shown to perform chloride abstraction from
deuterated chloroform
Deuterated chloroform, also known as chloroform-''d'', is the organic compound with the formula C2HCl3 or . Deuterated chloroform is a common solvent used in NMR spectroscopy. The properties of are virtually identical.
Preparation
Deuterated ch ...
, ''trans''-addition of trimethyl tin hydride, and formation of bicyclo
.1.1structure with
selenium
Selenium is a chemical element with the symbol Se and atomic number 34. It is a nonmetal (more rarely considered a metalloid) with properties that are intermediate between the elements above and below in the periodic table, sulfur and tellurium, ...
. Reactivity is displayed towards bromotrichloromethane where radical activity induces formation of boron-containing
spiro-compound from the
''tert''-butyl group. This cyclic formation maintains the diphosphadiboretane ring structure.
References
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Boron compounds