We present a novel approach to the dehydrochlorination of 1,2-dichloroethane using ionic liquid catalysts. After screening a wide range of ionic liquids, tetraalkylphosphonium chlorides show the best results, with much higher conversions compared with those of the current industrial “pyrolysis” process. This breakthrough approach has the remarkable advantage of operating at lower temperature while maintaining an excellent selectivity. This method shows high potential as a greener alternative for the current industrial process
An efficient and stable heterogeneous Zeolite Supported Ionic Liquid Catalyst (IL/CaX) has been expl...
Ionic liquids with [BMIM], [Et3NH], and [BPy] cations and AlnCl−3n+1, ZnnCl−2n+1, and Cu...
Highly efficient dechlorination of PVC has been realized at 180 degrees C and at atmospheric pressur...
We present a novel approach to the dehydrochlorination of 1,2-dichloroethane using ionic liquid cata...
Polyvinyl chloride is one of the most produced polymers worldwide. Therefore the production of vinyl...
Highly efficient dehydrochlorination of PVC is feasible using a readily available ionic liquid, 1-bu...
In summary, the co-production of vinyl chloride and methyl chloride using a mixed catalyst system co...
There is an urgent need for green technologies to remove halogens from halogenated polymers at the e...
Oral communication by Daan GlasA large range of ionic liquids (ILs) was investigated for their abili...
Scientists have a key role to play in the development of a more sustainable society. Ionic liquids, ...
Lanthanum oxide-based catalysts are active in the elimination of HCl from C2H5Cl, 1,2-C2H4Cl2 and 1,...
The pyrolysis of 1,2-dichloroethane (EDC) is the most popular commercialized way of producing vinyl ...
Trioctylmethylphosphonium nitrate (P8,8,8,1NO3), an ionic liquid made via a green synthesis, cataly...
Dehydrohalogenation of haloaromatics in ionic liquids derived from ethylmethylimidazolium or similar...
Polyvinyl chloride (PVC) is the third most widely used plastic in today’s society. The industrial pr...
An efficient and stable heterogeneous Zeolite Supported Ionic Liquid Catalyst (IL/CaX) has been expl...
Ionic liquids with [BMIM], [Et3NH], and [BPy] cations and AlnCl−3n+1, ZnnCl−2n+1, and Cu...
Highly efficient dechlorination of PVC has been realized at 180 degrees C and at atmospheric pressur...
We present a novel approach to the dehydrochlorination of 1,2-dichloroethane using ionic liquid cata...
Polyvinyl chloride is one of the most produced polymers worldwide. Therefore the production of vinyl...
Highly efficient dehydrochlorination of PVC is feasible using a readily available ionic liquid, 1-bu...
In summary, the co-production of vinyl chloride and methyl chloride using a mixed catalyst system co...
There is an urgent need for green technologies to remove halogens from halogenated polymers at the e...
Oral communication by Daan GlasA large range of ionic liquids (ILs) was investigated for their abili...
Scientists have a key role to play in the development of a more sustainable society. Ionic liquids, ...
Lanthanum oxide-based catalysts are active in the elimination of HCl from C2H5Cl, 1,2-C2H4Cl2 and 1,...
The pyrolysis of 1,2-dichloroethane (EDC) is the most popular commercialized way of producing vinyl ...
Trioctylmethylphosphonium nitrate (P8,8,8,1NO3), an ionic liquid made via a green synthesis, cataly...
Dehydrohalogenation of haloaromatics in ionic liquids derived from ethylmethylimidazolium or similar...
Polyvinyl chloride (PVC) is the third most widely used plastic in today’s society. The industrial pr...
An efficient and stable heterogeneous Zeolite Supported Ionic Liquid Catalyst (IL/CaX) has been expl...
Ionic liquids with [BMIM], [Et3NH], and [BPy] cations and AlnCl−3n+1, ZnnCl−2n+1, and Cu...
Highly efficient dechlorination of PVC has been realized at 180 degrees C and at atmospheric pressur...