Double-layer composite nanofiber membrane with photothermal conversion function and preparation method thereof
The invention provides a double-layer composite nanofiber membrane with a photothermal conversion function and a preparation method of the double-layer composite nanofiber membrane. The double-layer composite nanofiber membrane is formed by mutually compounding a self-floating polymer fiber layer an...
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creator | HUANG TINGSHAN WANG DONG YOU HAINING ZHANG WENYU CHEN ZHUO MEI TAO CUI KEYANG ZHAO QINGHUA |
description | The invention provides a double-layer composite nanofiber membrane with a photothermal conversion function and a preparation method of the double-layer composite nanofiber membrane. The double-layer composite nanofiber membrane is formed by mutually compounding a self-floating polymer fiber layer and a composite nanofiber layer. The composite nanofiber layer comprises a thermoplastic polymer nanofiber membrane with a three-dimensional porous structure and photo-thermal nanoparticles, wherein the thermoplastic polymer nanofiber membrane is formed by mutually staggering thermoplastic polymer nanofibers after cross-linking reaction, and the photo-thermal nanoparticles are completely coated in the thermoplastic polymer nanofibers. The double-layer composite nanofiber membrane has good self-floating performance, excellent mechanical performance, high water delivery rate and excellent photothermal conversion performance. According to the preparation method, the integrated photo-thermal composite nanofiber is prepar |
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The double-layer composite nanofiber membrane is formed by mutually compounding a self-floating polymer fiber layer and a composite nanofiber layer. The composite nanofiber layer comprises a thermoplastic polymer nanofiber membrane with a three-dimensional porous structure and photo-thermal nanoparticles, wherein the thermoplastic polymer nanofiber membrane is formed by mutually staggering thermoplastic polymer nanofibers after cross-linking reaction, and the photo-thermal nanoparticles are completely coated in the thermoplastic polymer nanofibers. The double-layer composite nanofiber membrane has good self-floating performance, excellent mechanical performance, high water delivery rate and excellent photothermal conversion performance. 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The double-layer composite nanofiber membrane is formed by mutually compounding a self-floating polymer fiber layer and a composite nanofiber layer. The composite nanofiber layer comprises a thermoplastic polymer nanofiber membrane with a three-dimensional porous structure and photo-thermal nanoparticles, wherein the thermoplastic polymer nanofiber membrane is formed by mutually staggering thermoplastic polymer nanofibers after cross-linking reaction, and the photo-thermal nanoparticles are completely coated in the thermoplastic polymer nanofibers. The double-layer composite nanofiber membrane has good self-floating performance, excellent mechanical performance, high water delivery rate and excellent photothermal conversion performance. 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The double-layer composite nanofiber membrane is formed by mutually compounding a self-floating polymer fiber layer and a composite nanofiber layer. The composite nanofiber layer comprises a thermoplastic polymer nanofiber membrane with a three-dimensional porous structure and photo-thermal nanoparticles, wherein the thermoplastic polymer nanofiber membrane is formed by mutually staggering thermoplastic polymer nanofibers after cross-linking reaction, and the photo-thermal nanoparticles are completely coated in the thermoplastic polymer nanofibers. The double-layer composite nanofiber membrane has good self-floating performance, excellent mechanical performance, high water delivery rate and excellent photothermal conversion performance. According to the preparation method, the integrated photo-thermal composite nanofiber is prepar</abstract><oa>free_for_read</oa></addata></record> |
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subjects | APPARATUS SPECIALLY ADAPTED FOR THE MANUFACTURE OF CARBONFILAMENTS BRAIDING CHEMICAL FEATURES IN THE MANUFACTURE OF ARTIFICIAL FILAMENTS,THREADS, FIBRES, BRISTLES OR RIBBONS COTTON-WOOL FABRICS MADE BY SUCH PROCESSES OR APPARATUS, e.g. FELTS,NON-WOVEN FABRICS KNITTING LACE-MAKING MAKING TEXTILE FABRICS, e.g. FROM FIBRES OR FILAMENTARYMATERIAL NATURAL OR ARTIFICIAL THREADS OR FIBRES NON-WOVEN FABRICS SPINNING TEXTILES TRIMMINGS WADDING |
title | Double-layer composite nanofiber membrane with photothermal conversion function and preparation method thereof |
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