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US Patent 11578231 Polyelectrolyte complexes

Patent 11578231 was granted and assigned to The Clorox Company on February, 2023 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
The Clorox Company
The Clorox Company
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Current Assignee
The Clorox Company
The Clorox Company
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
115782310
Date of Patent
February 14, 2023
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Patent Application Number
169504580
Date Filed
November 17, 2020
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Patent Citations
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US Patent 10858617 Precursor polyelectrolyte complexes compositions
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US Patent 10066196 Polyelectrolyte complexes
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US Patent 10208275 Polyelectrolyte complexes
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US Patent 10400131 Polyelectrolyte complexes
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US Patent 10563156 Polyelectrolyte complexes
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US Patent 10968363 Polyelectrolyte complexes
Patent Primary Examiner
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Gregory E. Webb
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CPC Code
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C11D 1/62
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The present invention relates to aqueous compositions of associative polyelectrolyte complexes (PECs), optionally containing surfactants, biocidal agents and/or oxidants, which can provide surface protection to treated articles including reduced soiling tendency, reduced cleaning effort and improved soil repellancy, as well as providing bacteriostatic properties to treated surfaces that thereby gain resistance to water, environmental exposure and microbial challenge. Treatment means and compositions are provided that employ associative polyelectrolyte complexes formed by combining a water soluble cationic first polyelectrolyte with a water soluble second polyelectrolyte bearing groups of opposite charge to the first polyelectrolyte under suitable mixing conditions where the one polyelectrolyte present in molar excess is added in the form of a first aqueous solution during a mixing step to a second aqueous solution comprising the oppositely charged polyelectrolyte present in molar deficiency. Also provided are means to form stable associative polyelectrolyte complexes in aqueous solutions having R values from about 0.10 to 20, including near stoichiometric R values approaching 1, being the ratio of charged groups present on the component polyelectrolytes employed.

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