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Nanocystalline cellulose reinforced sulfonated fluorenyl-containing polyaryletherketones for proton exchange membranes
Sulfonated fluorenyl-containing polyaryletherketones (SFPAEKs) were synthesized through a postsulfonation approach under a mild reaction condition. The composite proton exchange membranes based on SFPAEKs and various amounts of the modified nanocrystalline cellulose (NCC) were prepared by solution c...
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Published in: | Solid state ionics 2016-12, Vol.297, p.29-35 |
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creator | Ni, Chuangjiang Wei, Yingcong Hu, Qiuxue Li, Xiaobai Liu, Baijun Zhao, Qi Zhang, Mingyao Li, Yongjin Hu, Wei |
description | Sulfonated fluorenyl-containing polyaryletherketones (SFPAEKs) were synthesized through a postsulfonation approach under a mild reaction condition. The composite proton exchange membranes based on SFPAEKs and various amounts of the modified nanocrystalline cellulose (NCC) were prepared by solution casting method. The existence of the multiple hydroxyl and sulfonic acid groups on the chemically modified nanocrystalline cellulose was supposed to benefit the formation of hydrogen-bond network and proton-conducting channels, which would improve the proton conducting ability of the composite membranes. Furthermore, the properties, such as mechanical properties, thermal stability, water uptake, swelling ratio and so on, were thoroughly investigated. In comparison to the pristine SFPAEK, the composite membranes containing a “performance enhanced” NCC component presented the higher proton conductivity and better mechanical properties. It was found that the proton conductivity of the composite membrane with 4wt% of NCC could reach 0.234Scm−1 at 100°C, and this value was higher than that of most of the reported membranes. The results showed that the modified nanocrystalline cellulose reinforced SFPAEK composite membrane would be promising for the application as middle-temperature proton exchange membranes in fuel cells.
•Nanocrystal cellulose (NCC) reinforced SFPAEKs composite proton exchange membranes presented better performances than SFPAEKs, such as proton conductivity and mechanical properties.•Nanocomposites were obtained with modified NCC and sulfonated fluorenyl-containing polyaryletherketones (SFPAEKs) for proton exchange membrane application via solution casting method.•NCC could be uniformly dispersed in the SFPAEKs matrix by controlling the NCC ratio. |
doi_str_mv | 10.1016/j.ssi.2016.09.027 |
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•Nanocrystal cellulose (NCC) reinforced SFPAEKs composite proton exchange membranes presented better performances than SFPAEKs, such as proton conductivity and mechanical properties.•Nanocomposites were obtained with modified NCC and sulfonated fluorenyl-containing polyaryletherketones (SFPAEKs) for proton exchange membrane application via solution casting method.•NCC could be uniformly dispersed in the SFPAEKs matrix by controlling the NCC ratio.</description><identifier>ISSN: 0167-2738</identifier><identifier>EISSN: 1872-7689</identifier><identifier>DOI: 10.1016/j.ssi.2016.09.027</identifier><language>eng</language><publisher>Amsterdam: Elsevier B.V</publisher><subject>Cellulose ; Chemical synthesis ; Composite materials ; Composites ; Exchanging ; Fuel cells ; Mechanical properties ; Membranes ; Nanocrystals ; Polyaryletherketone ; Polyaryletherketones ; Proton exchange membrane fuel cells ; Sulfonic acid ; Swelling ratio ; Thermal stability</subject><ispartof>Solid state ionics, 2016-12, Vol.297, p.29-35</ispartof><rights>2016</rights><rights>Copyright Elsevier BV Dec 1, 2016</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c362t-b1a98912175a2b2cdf3597d287f38b980bd7e86aa3cb3da6ce7c0814f02c27b3</citedby><cites>FETCH-LOGICAL-c362t-b1a98912175a2b2cdf3597d287f38b980bd7e86aa3cb3da6ce7c0814f02c27b3</cites></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,776,780,27903,27904</link.rule.ids></links><search><creatorcontrib>Ni, Chuangjiang</creatorcontrib><creatorcontrib>Wei, Yingcong</creatorcontrib><creatorcontrib>Hu, Qiuxue</creatorcontrib><creatorcontrib>Li, Xiaobai</creatorcontrib><creatorcontrib>Liu, Baijun</creatorcontrib><creatorcontrib>Zhao, Qi</creatorcontrib><creatorcontrib>Zhang, Mingyao</creatorcontrib><creatorcontrib>Li, Yongjin</creatorcontrib><creatorcontrib>Hu, Wei</creatorcontrib><title>Nanocystalline cellulose reinforced sulfonated fluorenyl-containing polyaryletherketones for proton exchange membranes</title><title>Solid state ionics</title><description>Sulfonated fluorenyl-containing polyaryletherketones (SFPAEKs) were synthesized through a postsulfonation approach under a mild reaction condition. The composite proton exchange membranes based on SFPAEKs and various amounts of the modified nanocrystalline cellulose (NCC) were prepared by solution casting method. The existence of the multiple hydroxyl and sulfonic acid groups on the chemically modified nanocrystalline cellulose was supposed to benefit the formation of hydrogen-bond network and proton-conducting channels, which would improve the proton conducting ability of the composite membranes. Furthermore, the properties, such as mechanical properties, thermal stability, water uptake, swelling ratio and so on, were thoroughly investigated. In comparison to the pristine SFPAEK, the composite membranes containing a “performance enhanced” NCC component presented the higher proton conductivity and better mechanical properties. It was found that the proton conductivity of the composite membrane with 4wt% of NCC could reach 0.234Scm−1 at 100°C, and this value was higher than that of most of the reported membranes. The results showed that the modified nanocrystalline cellulose reinforced SFPAEK composite membrane would be promising for the application as middle-temperature proton exchange membranes in fuel cells.
•Nanocrystal cellulose (NCC) reinforced SFPAEKs composite proton exchange membranes presented better performances than SFPAEKs, such as proton conductivity and mechanical properties.•Nanocomposites were obtained with modified NCC and sulfonated fluorenyl-containing polyaryletherketones (SFPAEKs) for proton exchange membrane application via solution casting method.•NCC could be uniformly dispersed in the SFPAEKs matrix by controlling the NCC ratio.</description><subject>Cellulose</subject><subject>Chemical synthesis</subject><subject>Composite materials</subject><subject>Composites</subject><subject>Exchanging</subject><subject>Fuel cells</subject><subject>Mechanical properties</subject><subject>Membranes</subject><subject>Nanocrystals</subject><subject>Polyaryletherketone</subject><subject>Polyaryletherketones</subject><subject>Proton exchange membrane fuel cells</subject><subject>Sulfonic acid</subject><subject>Swelling ratio</subject><subject>Thermal stability</subject><issn>0167-2738</issn><issn>1872-7689</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2016</creationdate><recordtype>article</recordtype><recordid>eNp9kMtOwzAQRS0EEqXwAewisU6wnSa2xQpVvKQKNt1bjjNpHVy72A6if4-rsmY1M7pz53EQuiW4Ipi092MVo6loTissKkzZGZoRzmjJWi7O0SwLrKSs5pfoKsYRY9zWvJ2h73flvD7EpKw1DgoN1k7WRygCGDf4oKEv4mQH71TK6WAnH8AdbKm9S8o44zbF3tuDCgcLaQvhE5J3EIvsLfbB56KAH71VbgPFDnZdUFm9RheDshFu_uIcrZ-f1svXcvXx8rZ8XJW6bmkqO6IEF4QS1ijaUd0PdSNYTzkbat4JjrueAW-VqnVX96rVwDTmZDFgqinr6jm6O43Nh3xNEJMc_RRc3iiJaBq8EHhBcxc5dengYwwwyH0wu_yQJFge6cpRZrrySFdiITPd7Hk4eSBf_20gyKgNuEzLBNBJ9t784_4FB06HBQ</recordid><startdate>20161201</startdate><enddate>20161201</enddate><creator>Ni, Chuangjiang</creator><creator>Wei, Yingcong</creator><creator>Hu, Qiuxue</creator><creator>Li, Xiaobai</creator><creator>Liu, Baijun</creator><creator>Zhao, Qi</creator><creator>Zhang, Mingyao</creator><creator>Li, Yongjin</creator><creator>Hu, Wei</creator><general>Elsevier B.V</general><general>Elsevier BV</general><scope>AAYXX</scope><scope>CITATION</scope><scope>7U5</scope><scope>8FD</scope><scope>L7M</scope></search><sort><creationdate>20161201</creationdate><title>Nanocystalline cellulose reinforced sulfonated fluorenyl-containing polyaryletherketones for proton exchange membranes</title><author>Ni, Chuangjiang ; Wei, Yingcong ; Hu, Qiuxue ; Li, Xiaobai ; Liu, Baijun ; Zhao, Qi ; Zhang, Mingyao ; Li, Yongjin ; Hu, Wei</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c362t-b1a98912175a2b2cdf3597d287f38b980bd7e86aa3cb3da6ce7c0814f02c27b3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2016</creationdate><topic>Cellulose</topic><topic>Chemical synthesis</topic><topic>Composite materials</topic><topic>Composites</topic><topic>Exchanging</topic><topic>Fuel cells</topic><topic>Mechanical properties</topic><topic>Membranes</topic><topic>Nanocrystals</topic><topic>Polyaryletherketone</topic><topic>Polyaryletherketones</topic><topic>Proton exchange membrane fuel cells</topic><topic>Sulfonic acid</topic><topic>Swelling ratio</topic><topic>Thermal stability</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Ni, Chuangjiang</creatorcontrib><creatorcontrib>Wei, Yingcong</creatorcontrib><creatorcontrib>Hu, Qiuxue</creatorcontrib><creatorcontrib>Li, Xiaobai</creatorcontrib><creatorcontrib>Liu, Baijun</creatorcontrib><creatorcontrib>Zhao, Qi</creatorcontrib><creatorcontrib>Zhang, Mingyao</creatorcontrib><creatorcontrib>Li, Yongjin</creatorcontrib><creatorcontrib>Hu, Wei</creatorcontrib><collection>CrossRef</collection><collection>Solid State and Superconductivity Abstracts</collection><collection>Technology Research Database</collection><collection>Advanced Technologies Database with Aerospace</collection><jtitle>Solid state ionics</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Ni, Chuangjiang</au><au>Wei, Yingcong</au><au>Hu, Qiuxue</au><au>Li, Xiaobai</au><au>Liu, Baijun</au><au>Zhao, Qi</au><au>Zhang, Mingyao</au><au>Li, Yongjin</au><au>Hu, Wei</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Nanocystalline cellulose reinforced sulfonated fluorenyl-containing polyaryletherketones for proton exchange membranes</atitle><jtitle>Solid state ionics</jtitle><date>2016-12-01</date><risdate>2016</risdate><volume>297</volume><spage>29</spage><epage>35</epage><pages>29-35</pages><issn>0167-2738</issn><eissn>1872-7689</eissn><abstract>Sulfonated fluorenyl-containing polyaryletherketones (SFPAEKs) were synthesized through a postsulfonation approach under a mild reaction condition. The composite proton exchange membranes based on SFPAEKs and various amounts of the modified nanocrystalline cellulose (NCC) were prepared by solution casting method. The existence of the multiple hydroxyl and sulfonic acid groups on the chemically modified nanocrystalline cellulose was supposed to benefit the formation of hydrogen-bond network and proton-conducting channels, which would improve the proton conducting ability of the composite membranes. Furthermore, the properties, such as mechanical properties, thermal stability, water uptake, swelling ratio and so on, were thoroughly investigated. In comparison to the pristine SFPAEK, the composite membranes containing a “performance enhanced” NCC component presented the higher proton conductivity and better mechanical properties. It was found that the proton conductivity of the composite membrane with 4wt% of NCC could reach 0.234Scm−1 at 100°C, and this value was higher than that of most of the reported membranes. The results showed that the modified nanocrystalline cellulose reinforced SFPAEK composite membrane would be promising for the application as middle-temperature proton exchange membranes in fuel cells.
•Nanocrystal cellulose (NCC) reinforced SFPAEKs composite proton exchange membranes presented better performances than SFPAEKs, such as proton conductivity and mechanical properties.•Nanocomposites were obtained with modified NCC and sulfonated fluorenyl-containing polyaryletherketones (SFPAEKs) for proton exchange membrane application via solution casting method.•NCC could be uniformly dispersed in the SFPAEKs matrix by controlling the NCC ratio.</abstract><cop>Amsterdam</cop><pub>Elsevier B.V</pub><doi>10.1016/j.ssi.2016.09.027</doi><tpages>7</tpages></addata></record> |
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subjects | Cellulose Chemical synthesis Composite materials Composites Exchanging Fuel cells Mechanical properties Membranes Nanocrystals Polyaryletherketone Polyaryletherketones Proton exchange membrane fuel cells Sulfonic acid Swelling ratio Thermal stability |
title | Nanocystalline cellulose reinforced sulfonated fluorenyl-containing polyaryletherketones for proton exchange membranes |
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