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大豆蛋白增强水凝胶电解质的制备及在全固态超级电容器上的应用
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作者 南静娅 张盖同 +3 位作者 王利军 汪宏生 储富祥 王春鹏 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2021年第3期143-150,共8页
以聚丙烯酰胺链交联形成三维网状结构,通过大豆蛋白纳米粒子与聚丙烯酰胺之间的静电引力,将大豆蛋白引入聚丙烯酰胺交联网络中,经磷酸溶液置换,得到一种水凝胶电解质。大豆蛋白纳米粒子与聚丙烯酰胺分子链之间的协同作用,使得水凝胶在80... 以聚丙烯酰胺链交联形成三维网状结构,通过大豆蛋白纳米粒子与聚丙烯酰胺之间的静电引力,将大豆蛋白引入聚丙烯酰胺交联网络中,经磷酸溶液置换,得到一种水凝胶电解质。大豆蛋白纳米粒子与聚丙烯酰胺分子链之间的协同作用,使得水凝胶在80%应变时进行100次的循环压缩后未发生结构断裂或损坏;以水凝胶电解质为固体电解质,以聚吡咯-碳纳米管纸为电极,组装成对称结构的全固态超级电容器。组装的全固态超级电容器具有优异的电化学性能,最大能量密度为6.2 W·h/kg,最大功率密度为398.4 W/kg。更重要的是,器件整体可承受80%的压缩应变而未产生断裂或损坏,并表现出良好的电容稳定性. 展开更多
关键词 大豆蛋白 水凝胶 电解质 超级电容器 电容稳定性
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Polymeric Hydrogel Nanocapsules: A Thermo and pH Dual-responsive Carrier for Sustained Drug Release 被引量:1
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作者 Jingya Nan Ying Chen +4 位作者 Rutian Li Jifu Wang Meihong Liu chunpeng Wang fuxiang chu 《Nano-Micro Letters》 SCIE EI CAS 2014年第3期200-208,共9页
Hydrogel capsules show attractive prospects in drug delivery recently because of high drug loading and sustained release behavior. In this study we reported a simple and convenient route to fabricate poly(acrylic acid... Hydrogel capsules show attractive prospects in drug delivery recently because of high drug loading and sustained release behavior. In this study we reported a simple and convenient route to fabricate poly(acrylic acid)-poly(N-isopropylacrylamide)(PAA-PNIPAm) hydrogel capsules by using hydroxypropylcellulose-poly(acrylic acid)(HPC-PAA) complexes as the templates. The capsules showed a high drug loading(~280% to the weight of capsules) for Doxorubicin hydrochloride. The release of drug from the capsules was responsive to the temperature and p H of the surroundings, showing a low-rate but sustained release behavior favorable for low-toxic and long-term therapy. Together with the convenient preparation, high drug loading, dual responsivity as well as the sustained release feature, it is implied that this polymeric hydrogel capsule might be a promising candidate for new drug carriers. 展开更多
关键词 Hydrogel capsules Sustained release High drug loading Dual responsivity
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Bio-based polymeric materials synthesized from renewable resources: A mini-review 被引量:7
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作者 Yitong Xie Shishuai Gao +2 位作者 Daihui Zhang chunpeng Wang fuxiang chu 《Resources Chemicals and Materials》 2023年第3期223-230,共8页
In recent years,bio-based polymeric materials have attracted increased attention owing to their distinctive prop-erties,including richness,sustainability,environmental friendliness,and biodegradability.This article re... In recent years,bio-based polymeric materials have attracted increased attention owing to their distinctive prop-erties,including richness,sustainability,environmental friendliness,and biodegradability.This article reviews the recent developments and potential trends of research on bio-based polymers synthesized from various re-newable resources.It covers the resources and structures of bio-based monomers,the methods of synthesis and properties of bio-based thermoplastics and thermosets,the production of bio-based composites and the fabrica-tion of functional bio-based polymers.Finally,the technological and future challenges related to enabling these materials to apply in the industry have been discussed,together with the potential solutions or directions. 展开更多
关键词 Biobased polymers Renewable resources MATERIALS FUNCTIONALITY
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Coupling of Adhesion and Anti‑Freezing Properties in Hydrogel Electrolytes for Low‑Temperature Aqueous‑Based Hybrid Capacitors
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作者 Jingya Nan Yue Sun +9 位作者 Fusheng Yang Yijing Zhang Yuxi Li Zihao Wang chuchu Wang Dingkun Wang fuxiang chu chunpeng Wang Tianyu Zhu Jianchun Jiang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第2期15-31,共17页
Solid-state zinc-ion capacitors are emerging as promising candidates for large-scale energy storage owing to improved safety,mechanical and thermal stability and easy-to-direct stacking.Hydrogel electrolytes are appea... Solid-state zinc-ion capacitors are emerging as promising candidates for large-scale energy storage owing to improved safety,mechanical and thermal stability and easy-to-direct stacking.Hydrogel electrolytes are appealing solid-state electrolytes because of eco-friendliness,high conductivity and intrinsic flexibility.However,the electrolyte/electrode interfacial contact and anti-freezing properties of current hydrogel electrolytes are still challenging for practical applications of zinc-ion capacitors.Here,we report a class of hydrogel electrolytes that couple high interfacial adhesion and anti-freezing performance.The synergy of tough hydrogel matrix and chemical anchorage enables a well-adhered interface between hydrogel electrolyte and electrode.Meanwhile,the cooperative solvation of ZnCl2 and LiCl hybrid salts renders the hydrogel electrolyte high ionic conductivity and mechanical elasticity simultaneously at low temperatures.More significantly,the Zn||carbon nanotubes hybrid capacitor based on this hydrogel electrolyte exhibits low-temperature capacitive performance,delivering high-energy density of 39 Wh kg^(-1)at-60°C with capacity retention of 98.7%over 10,000 cycles.With the benefits of the well-adhered electrolyte/electrode interface and the anti-freezing hydrogel electrolyte,the Zn/Li hybrid capacitor is able to accommodate dynamic deformations and function well under 1000 tension cycles even at-60°C.This work provides a powerful strategy for enabling stable operation of low-temperature zinc-ion capacitors. 展开更多
关键词 Interfacial adhesion ANTI-FREEZING Hydrogel electrolytes Low-temperature hybrid capacitors Dynamic deformati
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