C07C211/52

PROCESS FOR THE REDUCTIVE AMINATION AND SELECTIVE HYDROGENATION OF SUBSTRATES CONTAINING A SELECTED HALOGEN

Disclosed is a process for performing a chemical reaction selected from reductive amination and hydrogenation of a first functional group in an organic feed substrate, which feed substrate comprises at least one further functional group containing a halogen atom, wherein the halogen atom is selected from the list consisting of chlorine, bromine, iodine, and combinations thereof, in the presence of hydrogen and a heterogeneous catalyst comprising at least one metal from the list of Pd, Rh, and Ru, together with at least a second metal from the list consisting of Ag, Ni, Co, Sn, Cu and Au. The process is preferably applied for the reductive amination of 2-chloro-benzaldehyde to form 2-chloro-benzyldimethylamine, as an intermediate in the production of agrochemically active compounds and microbiocides of the methoximinophenylglyoxylic ester series. Further disclosed is a composition rich in 2-chloro-benzyldimethylamine, further comprising an amount of 2-chloro-benzyl alcohol and being low in chlorotoluene isomers.

PROCESS FOR THE REDUCTIVE AMINATION AND SELECTIVE HYDROGENATION OF SUBSTRATES CONTAINING A SELECTED HALOGEN

Disclosed is a process for performing a chemical reaction selected from reductive amination and hydrogenation of a first functional group in an organic feed substrate, which feed substrate comprises at least one further functional group containing a halogen atom, wherein the halogen atom is selected from the list consisting of chlorine, bromine, iodine, and combinations thereof, in the presence of hydrogen and a heterogeneous catalyst comprising at least one metal from the list of Pd, Rh, and Ru, together with at least a second metal from the list consisting of Ag, Ni, Co, Sn, Cu and Au. The process is preferably applied for the reductive amination of 2-chloro-benzaldehyde to form 2-chloro-benzyldimethylamine, as an intermediate in the production of agrochemically active compounds and microbiocides of the methoximinophenylglyoxylic ester series. Further disclosed is a composition rich in 2-chloro-benzyldimethylamine, further comprising an amount of 2-chloro-benzyl alcohol and being low in chlorotoluene isomers.

METHOD FOR PRODUCING BIPHENYLAMINES FROM AZOBENZENES BY RUTHENIUM CATALYSIS

The present invention relates to a novel method for preparing substituted biphenylamines

METHOD FOR PRODUCING BIPHENYLAMINES FROM AZOBENZENES BY RUTHENIUM CATALYSIS

The present invention relates to a novel method for preparing substituted biphenylamines

METHODS AND COMPOSITIONS FOR GENOME EDITING VIA HAPLOID INDUCTION

Methods and compositions for improved plant breeding using gene editing and haploid induction are provided.

Fluorine-containing complex compound, and production method for fluorine-containing organic compound employing same

An object of the present invention is to enable the synthesis of various fluorine-containing compounds having an organic group at both terminals of their tetrafluoroethylene structure (—CF.sub.2—CF.sub.2—). The present invention provides a fluorine-containing complex compound including a fluorine-containing organic metal compound represented by formula (1a):
R.sup.1—CF.sub.2—CF.sub.2-M.sup.1  (1a)
wherein M.sup.1 is a metal selected from the group consisting of copper, zinc, nickel, iron, cobalt, and tin; and R.sup.1 represents an organic group, and at least one ligand selected from the group consisting of pyridine ring-containing compounds and phosphines.

Fluorine-containing complex compound, and production method for fluorine-containing organic compound employing same

An object of the present invention is to enable the synthesis of various fluorine-containing compounds having an organic group at both terminals of their tetrafluoroethylene structure (—CF.sub.2—CF.sub.2—). The present invention provides a fluorine-containing complex compound including a fluorine-containing organic metal compound represented by formula (1a):
R.sup.1—CF.sub.2—CF.sub.2-M.sup.1  (1a)
wherein M.sup.1 is a metal selected from the group consisting of copper, zinc, nickel, iron, cobalt, and tin; and R.sup.1 represents an organic group, and at least one ligand selected from the group consisting of pyridine ring-containing compounds and phosphines.

HERBICIDAL AND FUNGICIDAL COMPOSITIONS AND THEIR USES
20170280718 · 2017-10-05 ·

Described herein are compounds of Formulas I-XIII and agrochemically acceptable salts thereof having herbicidal and fungicidal activity. Also disclosed herein are herbicidal and fungicidal compositions, including compounds of Formula I-XIII or agrochemically acceptable salts thereof, and methods of controlling unwanted vegetation or fungus using compositions including the compound of Formula I-XIII or an agrochemically acceptable salt thereof.

HERBICIDAL AND FUNGICIDAL COMPOSITIONS AND THEIR USES
20170280718 · 2017-10-05 ·

Described herein are compounds of Formulas I-XIII and agrochemically acceptable salts thereof having herbicidal and fungicidal activity. Also disclosed herein are herbicidal and fungicidal compositions, including compounds of Formula I-XIII or agrochemically acceptable salts thereof, and methods of controlling unwanted vegetation or fungus using compositions including the compound of Formula I-XIII or an agrochemically acceptable salt thereof.

PROCESS FOR PREPARING SUBSTITUTED ANILINES

The present invention relates to a process for preparing compounds of the formula (I)

##STR00001##

starting from compounds of the formula (II)

##STR00002##

wherein R.sup.1, R.sup.2, R.sup.3 and R.sup.3′ are defined in according to the invention.