Reverse Dissolution as a Route in the Synthesis of Poly(vinyl butyral) with High Butyral Contents
Biao Yang, Rengang Liu, Jijun Huang, Hui Sun
Abstract
Biao Yang, Rengang Liu, Jijun Huang, Hui Sun
Abstract
For applications in ultrafiltration membranes, cancer cell uptake, bioimaging, and diagnostics, a reverse dissolution approach, where swollen poly(vinyl alcohol) (PVA) particles are added to a butyraldehyde solution in ethanol, is employed to synthesize poly(vinyl butyral) (PVB) with high contents of butyral groups. The final butyral group content (up to 84%) of PVB is found to be dependent strongly on the initial condensed state of PVA, the degree of polymerization of PVA, the purity and volume of ethanol, and the pH value. A maximum of butyral group content may be obtained under conditions: swollen PVA particles, (95 vol %) ethanol of 125–150 mL, and pH 1. This reverse dissolution approach has advantages such as a mild reaction condition (70 °C), no predissolution of PVA at high temperatures, no vacuum removal of water during reaction, and low water consumption in post-treatment of the product.
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For applications in ultrafiltration membranes, cancer cell uptake, bioimaging, and diagnostics, a reverse dissolution approach, where swollen poly(vinyl alcohol) (PVA) particles are added to a butyraldehyde solution in ethanol, is employed to synthesize poly(vinyl butyral) (PVB) with high contents of butyral groups. The final butyral group content (up to 84%) of PVB is found to be dependent strongly on the initial condensed state of PVA, the degree of polymerization of PVA, the purity and volume of ethanol, and the pH value. A maximum of butyral group content may be obtained under conditions: swollen PVA particles, (95 vol %) ethanol of 125–150 mL, and pH 1. This reverse dissolution approach has advantages such as a mild reaction condition (70 °C), no predissolution of PVA at high temperatures, no vacuum removal of water during reaction, and low water consumption in post-treatment of the product.
Key concepts: Dissolution, Polyvinyl butyral, Vinyl alcohol, Materials science, Chemical engineering, Ultrafiltration (renal), Polymer chemistry, Chemistry