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Salt metathesis is a common technique for exchanging counterions. The choice of reactants is guided by a solubility chart or lattice energy. HSAB theory can also be used to predict the products of a metathesis reaction. Salt metathesis is often employed to obtain salts that are soluble in organic solvents.
Salt metathesis reaction, exchange of bonds between two reacting chemical species; Olefin metathesis, redistribution of olefinic (alkene) chemical bonds; Alkane metathesis, redistribution of alkane chemical bonds; Alkyne metathesis, redistribution of alkyne chemical bonds
Using salt metathesis reactions, potassium hexachloroplatinate is converted to a variety of quaternary ammonium and related lipophilic salts. These include tetrabutylammonium salt (NBu 4) 2 PtCl 6, which has been investigated as a catalyst.
The [BAr F 4] − anion with four fluorinated aryl groups distributed tetrahedrally about a central boron atom. Tetrakis[3,5-bis(trifluoromethyl)phenyl]borate is an anion with chemical formula [{3,5-(CF 3) 2 C 6 H 3} 4 B] −, which is commonly abbreviated as [BAr F 4] −, indicating the presence of fluorinated aryl (Ar F) groups.
Ag + [Al(Ohfip) 4] −, Ag + [Al(Ohftb) 4] −, and Ag + [Al(Opftb) 4] − can be synthesized via salt metathesis reactions; ultrasonication of a suspension of Li + [PFAA] − and an excess of AgF at 40 °C for 12 hours produces the final colorless products in high yields on multigram scales. [4]
Ammonium perchlorate (AP) is produced by reaction between ammonia and perchloric acid.This process is the main outlet for the industrial production of perchloric acid.The salt also can be produced by salt metathesis reaction of ammonium salts with sodium perchlorate.
Using salt metathesis reactions, nitrite, azide, and other small inorganic anions can be obtained with [(Ph 3 P) 2 N] + cations. The resulting salts [(Ph 3 P) 2 N] + NO − 2, [(Ph 3 P) 2 N] + N − 3, etc. are soluble in polar organic solvents. [(Ph 3 P) 2 N] + forms crystalline salts with a range of anions that are otherwise difficult to ...
The halide salt is prepared by the reaction of triethylamine and an ethyl halide: + + This method works well for the preparation of tetraethylammonium iodide (where X = I). [1] Most tetraethylammonium salts are prepared by salt metathesis reactions.