Boron trifluoride BF3 reacts with F- ion to form the BF4- ion. BF3 has only 6 electrons around the B atom, is planar, and is a Lewis acid (as it will accept electrons from an electron pair donor such as F-. BF4- is a tetrahedral ion- all four bonds are equivalent.
The structure of BF4- is tetrahedral.
Yes! BF4- is a tetrahedral as it is just a boron with four Florines attached and no lone pairs.
Not sure what the word isobal might be. BH4- and NH4+ are isoelectronic. BF4- and NH4+ are both tetrahedral and have the same geometry.
Boron cannot make simple compounds with a filled octet. Though it forms complex ions such as BF4- , BCl4- where it completes the octet.
There is no single ion that leads to the endings -ate or -ide, though ions with such ions can be assumed to be negative ions (anions). A few examples are given below. Monatomic anions have names ending in -ide: Hydride: H- Nitride: N3- Oxide: O2- Sulfide: S2- Chloride: Cl2- A few polyatomic ions have names ending in -ide as well Peroxide: O22- Hydroxide: OH- Cyanide; CN- Ions with names ending in -ate are polyatomic anions that contain the maximum oxygen for that atom. The prefix per- indicates an even higher number of oxygen atoms and/or a higher oxidation state: Carbonate: CO32- Acetate: C2H3O2- Nitrate: NO3- Sulfate: SO42- Cyanate: OCN- Chlorate: ClO3- Perchlorate: ClO4- A few ions ending in -ate, however, do not contain oxygen Thiocyanate: SCN- Hexafluorosilicate: SiF62- Tetrafluoroborate: BF4-
Yes, F- donates a pair of lone e- to BF3
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The structure of BF4- is tetrahedral.
The central B atom min BF4- is sp3 hybridised- BF4-is tetrahedral - B has s and p orbitals available for bonding.
Na(BF4) forms so Na+ and (BF4)- are the ions produced
Yes! BF4- is a tetrahedral as it is just a boron with four Florines attached and no lone pairs.
Boron triflouride, or BF3 does not have a double bond. This is because boron has three atoms in its outer shell and fluorine has seven. This enables boron to form three single covalent bonds with the fluorine.
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Not sure what the word isobal might be. BH4- and NH4+ are isoelectronic. BF4- and NH4+ are both tetrahedral and have the same geometry.
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