IP Library › Granted Patent US 11,639,917
Granted Patent B2
US 11,639,917 · App. 16/959,489 · Granted May 2, 2023

Dianhydride analysis method

Inventors: Joon Seok Lee (Daejeon, KR); So Yeon Kim (Daejeon, KR); Bumgyu Choi (Daejeon, KR); Byoung Hyoun Kim (Daejeon, KR)
G01N30/34G01N30/36G01N30/64G01N30/74
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Quick Facts
Patent No.
US 11,639,917
App. No.
16/959,489
Granted
May 2, 2023
Kind
B2
Abstract

The present invention relates to a dianhydride analysis method, which can reliably analyze a dianhydride having high reactivity and low solubility. In addition, the present invention can analyze the structure of impurities by separating the impurities on the basis of having a similar retention time in HPLC analysis, and can analyze the purity of the dianhydride with or without chromophores.

Claims (10)

1. An analysis method for dianhydride by HPLC (high performance liquid chromatography), comprising:

injecting a mobile phase comprising an anhydrous compound and a dianhydride sample into a column;

eluting the mobile phase through the column; and

analyzing the dianhydride sample using a detector,

wherein the column comprises a stationary phase which is a cyano column,

wherein the mobile phase is a combination of anhydrous acetonitrile (ACN) and anhydrous dimethylformamide (DMF) and an elution condition of the mobile phase is a concentration gradient of 20% ACN and 80% DMF at 0 minute and 60% ACN and 40% DMF at 10 minutes from the start of the analysis.

2. The analysis method for dianhydride according to claim 1 , wherein the dianhydride comprises at least one of 4,4′-biphthalic dianhydride (BPDA), pyromellitic dianhydride (PMDA), 1,3-dimethylcyclobutane-1,2,3,4-tetracarboxylic dianhydride (DMCBDA), 1,2,3,4-butane tetracarboxylic dianhydride (BT-100), 3,3′,4,4′-diphenyl sulfone tetracarboxylic dianhydride, 1,2,4,5-cyclohexane tetracarboxylic dianhydride, 1,2,3,4-cyclopentane tetracarboxylic dianhydride, diethylene triamine penta acetic dianhydride or 1,2,3,4-cyclobutanetetracarboxylic dianhydride.

3. The analysis method for dianhydride according to claim 1 , wherein the detector is a photodiode array detector in the case of the presence of chromophores and the detector is a charged aerosol detector in the case of the absence of chromophores.

4. The analysis method for dianhydride according to claim 1 , wherein the dianhydride sample is in the form of a solution comprising the dianhydride dissolved in a solvent.

5. The analysis method for dianhydride according to claim 4 , wherein the solvent used for dissolving the dianhydride comprises at least one of anhydrous acetonitrile (ACN), anhydrous dimethylformamide (DMF), acetic anhydride, anhydrous acetone, anhydrous benzene, anhydrous carbon tetrachloride, anhydrous cyclohexane, anhydrous cyclopentane, anhydrous dichloroethane, anhydrous dichloromethane, anhydrous dimethyl sulfoxide, anhydrous dioxane, anhydrous ethyl acetate, anhydrous diethyl ether, anhydrous methanol, anhydrous methyl ethyl ketone, anhydrous tetrachloroethane, anhydrous tetrahydrofuran, anhydrous toluene or anhydrous trichloroethane.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2020
From: LEE, JOON SEOK; KIM, SO YEON; CHOI, BUMGYU; KIM, BYOUNG HYOUN
To: LG CHEM, LTD.
Reel/Frame 053106/0088 →
Priority Claims (2)
KR 10-2018-0114783 · Sep 27, 2018 · national
KR 10-2019-0115730 · Sep 20, 2019 · national
Continuity (1)
Related Publication 20210072200A1 · Mar 11, 2021