Patent classifications
C07C233/65
Method for coupling a first compound to a second compound
The present disclosure describes a method of coupling a first compound to a second compound, the method comprising: providing the first compound having a fluorosulfonate substituent; providing the second compound comprising an alkene; and reacting the first compound and the second compound in a reaction mixture, the reaction mixture including a catalyst having at least one group 10 atom, the reaction mixture under conditions effective to couple the first compound to the second compound.
Diabetes and Metabolic Syndrome Treatment with a Novel Dual Modulator of Soluble Epoxide Hydrolase and Peroxisome Proliferator-Activated Receptors
A catheter assembly includes an elongated catheter shaft, a magnetic sensor, and one or more wires. The elongated catheter shaft has a shaft proximal end and a shaft distal end, and the magnetic sensor includes a coil having a coil proximal end and a coil distal end that is situated toward or at the shaft distal end. The one or more wires extend through the elongated catheter shaft and are situated adjacent the magnetic sensor. Each of the one or more wires is electrically coupled to the coil at the coil distal end.
Diabetes and Metabolic Syndrome Treatment with a Novel Dual Modulator of Soluble Epoxide Hydrolase and Peroxisome Proliferator-Activated Receptors
A catheter assembly includes an elongated catheter shaft, a magnetic sensor, and one or more wires. The elongated catheter shaft has a shaft proximal end and a shaft distal end, and the magnetic sensor includes a coil having a coil proximal end and a coil distal end that is situated toward or at the shaft distal end. The one or more wires extend through the elongated catheter shaft and are situated adjacent the magnetic sensor. Each of the one or more wires is electrically coupled to the coil at the coil distal end.
Process for the preparation of a spiroheterocyclic pyrrolidine dione
A process for making certain spiroheterocyclic pyrrolidine dione derivatives.
Process for the preparation of a spiroheterocyclic pyrrolidine dione
A process for making certain spiroheterocyclic pyrrolidine dione derivatives.
Trisamide compounds and compositions comprising the same
A composition comprises one or more trimesic acid derivatives of Formula (I) ##STR00001## in which R.sup.1, R.sup.2, and R.sup.3 are independently selected from the group consisting of alkyl groups. A polymer composition comprises a composition as described above and a polyolefin polymer. The polymer compositions containing a trimesic acid derivative of Formula (I) exhibit very low haze levels and minimal extraction of the trimesic acid derivative.
FORMULATION COMPONENT
The present invention relates to agrochemical compositions comprising certain benzamide compounds and to the use of those benzamide compounds as adjuvants, especially in formulations, in particular in agrochemical formulations and in environmentally friendly formulations. The invention further extends to certain novel benzamide compounds and a process to prepare such novel compounds.
FORMULATION COMPONENT
The present invention relates to agrochemical compositions comprising certain benzamide compounds and to the use of those benzamide compounds as adjuvants, especially in formulations, in particular in agrochemical formulations and in environmentally friendly formulations. The invention further extends to certain novel benzamide compounds and a process to prepare such novel compounds.
FARNESOID X RECEPTOR AGONISTS AND USES THEREOF
Described herein are compounds that are farnesoid X receptor agonists, methods of making such compounds, pharmaceutical compositions and medicaments comprising such compounds, and methods of using such compounds in the treatment of conditions, diseases, or disorders associated with farnesoid X receptor activity.
NOVEL PROCESS
A process for making certain spiroheterocyclic pyrrolidine dione derivatives.