C07C211/07

Process for the preparation of diphenylpyrazine derivatives

The present invention relates to a process for the preparation of amorphous Selexipag from Selexipag crystalline salts using a solvent.

Process for the preparation of diphenylpyrazine derivatives

The present invention relates to a process for the preparation of amorphous Selexipag from Selexipag crystalline salts using a solvent.

METHODS FOR EXTRACTION, PROCESSING, AND PURIFICATION OF A SELECTED FAMILY OF TARGET COMPOUNDS FROM CANNABIS
20220220057 · 2022-07-14 ·

Disclosed are methods for separating, recovering, and purifying cannabidiolic acid (CBDA) salts from an organic solvent solution comprising a mixture of cannabinoids. The methods comprise solubilizing the mixture of cannabinoids in C5-C7 hydrocarbon solvents, adding thereto a selected amine to thereby precipitate a CBDA-amine salt therefrom, dissolving the recovered CBDA-amine salt in a selected solvent and then adding thereto a selected antisolvent to thereby recrystallizing a purified CBDA-amine salt therefrom. The recrystallized CBDA-amine salt may be decarboxylated to form a mixture of cannabidiol (CBD) and amine. The CBD amine mixture may be acidified to separate the amine from CBD. The recovered CBD may be concentrated to produce a highly purified CBD. Also disclosed are CBDA-amine salts produced with certain amines selected from groups of secondary amines, tertiary amines, diamines, amino alcohols, amino ethers, and highly basic amines.

NOVEL SALTS AND POLYMORPHIC FORM OF BEMPEDOIC ACID

The present invention relates to novel pharmaceutically acceptable salts of Bempedoic acid, novel intermediates of Bempedoic acid, novel crystalline form of Bempedoic acid and novel processes for the preparation of Bempedoic acid or its intermediates thereof.

COMPOSITION SUPPLY METHOD, COMPOSITION, SUPPLY DEVICE, AND COMPOSITION FILLING METHOD

The present disclosure provides a method for stably supplying a highly pure n-butylamine gas having a constant composition. The present disclosure is a composition supply method including: a filling step of filling a container with a composition containing n-butylamine in an amount of 99.5% by volume or more and isobutylamine in an amount of 0.001% by volume or more and 0.5% by volume or less; a warming step of warming the container filled with the composition to 50° C. or higher; and a gas supply step of supplying a gas containing n-butylamine and isobutylamine from the warmed container to a predetermined device.

METHODS FOR EXTRACTION, PROCESSING, AND PURIFICATION OF A SELECTED FAMILY OF TARGET COMPOUNDS FROM CANNABIS

Disclosed are methods for separating, recovering, and purifying tetrahydrocannabinolic acid (THCA) salts from an organic solvent solution comprising a mixture of cannabinoids. The methods comprise solubilizing the mixture of cannabinoids in a selected C5-C7 hydrocarbon solvent, adding thereto a selected amine to thereby precipitate a THCA-amine salt therefrom, dissolving the recovered THCA-amine salt in a selected solvent and then adding thereto a selected antisolvent to thereby recrystallize a purified THCA-amine salt therefrom. The recrystallized THCA-amine salt may be decarboxylated to form a mixture of Δ9-tetrahydrocannabinol (Δ9-THC) and amine. The Δ9-THC amine mixture may be acidified to separate the amine from Δ9-THC. The recovered Δ9-THC may be concentrated to produce a highly purified Δ9-THC. Also disclosed are THCA-amine salts produced with amines selected from groups of diamines, amino alcohols, and tertiary amines.

ORGANIC SALT, HYDROXY-RADICAL SENSOR INCLUDING SAME, AND DETECTION MEDIUM
20210270853 · 2021-09-02 ·

An organic salt of the present disclosure contains terephthalic acid and at least one kind of primary alkylamine. An alkyl group constituting the primary alkylamine has 6 or more and 17 or less carbon atoms. The organic salt of the present disclosure can be used to detect a hydroxy radical contained in a gas, for example. The present disclosure provides: an organic salt that makes it possible to detect a hydroxy radical more easily as well as to detect a hydroxy radical generated in a living body; and a hydroxy-radical sensor adopting the organic salt.

ORGANIC SALT, HYDROXY-RADICAL SENSOR INCLUDING SAME, AND DETECTION MEDIUM
20210270853 · 2021-09-02 ·

An organic salt of the present disclosure contains terephthalic acid and at least one kind of primary alkylamine. An alkyl group constituting the primary alkylamine has 6 or more and 17 or less carbon atoms. The organic salt of the present disclosure can be used to detect a hydroxy radical contained in a gas, for example. The present disclosure provides: an organic salt that makes it possible to detect a hydroxy radical more easily as well as to detect a hydroxy radical generated in a living body; and a hydroxy-radical sensor adopting the organic salt.

2H to 1T phase based transition metal dichalcogenide sensor for optical and electronic detection of strong electron donor chemical vapors

Optical and electronic detection of chemicals, and particularly strong electron-donors, by 2H to 1T phase-based transition metal dichalcogenide (TMD) films, detection apparatus incorporating the TMD films, methods for forming the detection apparatus, and detection systems and methods based on the TMD films are provided. The detection apparatus includes a 2H phase TMD film that transitions to the 1T phase under exposure to strong electron donors. After exposure, the phase state can be determined to assess whether all or a portion of the TMD has undergone a transition from the 2H phase to the 1T phase. Following detection, TMD films in the 1T phase can be converted back to the 2H phase, resulting in a reusable chemical sensor that is selective for strong electron donors.

2H to 1T phase based transition metal dichalcogenide sensor for optical and electronic detection of strong electron donor chemical vapors

Optical and electronic detection of chemicals, and particularly strong electron-donors, by 2H to 1T phase-based transition metal dichalcogenide (TMD) films, detection apparatus incorporating the TMD films, methods for forming the detection apparatus, and detection systems and methods based on the TMD films are provided. The detection apparatus includes a 2H phase TMD film that transitions to the 1T phase under exposure to strong electron donors. After exposure, the phase state can be determined to assess whether all or a portion of the TMD has undergone a transition from the 2H phase to the 1T phase. Following detection, TMD films in the 1T phase can be converted back to the 2H phase, resulting in a reusable chemical sensor that is selective for strong electron donors.