首页> 外文期刊>Solid state ionics >Effects of tin phosphate nanosheet addition on proton-conducting properties of sulfonated poly(ether sulfone) membranes
【24h】

Effects of tin phosphate nanosheet addition on proton-conducting properties of sulfonated poly(ether sulfone) membranes

机译:磷酸锡纳米片的添加对磺化聚醚砜膜质子传导性能的影响

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Organic/inorganic composite membranes were prepared by dispersing nanosheets of layered tin phosphate hydrate [Sn(HPO_4) 2·nH_2O (SnP)] in sulfonated poly(ether sulfone) (SPES) at SnP contents of 0-40 vol.%. The stabilities and proton conductivities of SPES/SnP nanosheet (SnP-NS) composite membranes were investigated and compared with those of SPES/SnP particle (SnP-P) composite membranes. The chemical stabilities as evaluated by thermogravimetry, differential thermal analysis, and diffuse reflectance Fourier-transform infrared spectroscopy were improved in both composite membranes. The improvement in the structural stability of SPES/SnP-NS composite membranes was more evident than that in SPES/SnP-P. The results suggest that exfoliation of SnP increases the area of the SPES-SnP interface and extends the connectivity of the network of hydrogen bonds. A composite membrane containing 10 vol.% SnP-NS (SPES/SnP-NS10vol.%) showed a high conductivity of 5.9 × 10- 2 S cm- 1 at 150 °C under saturated water vapor pressure. Although less water was present in SPES/SnP-NS10vol.% than in SPES/SnP-P10vol.% or pure SPES, the conductivity of SnP-NS10vol.% was the highest among these samples at 130 °C under a high relative humidity (RH). However at a low RH, the proton-conducting property was not improved by changing the composition of the SnP-NS. These results suggest that the hydrogen-bond network operates effectively for proton conduction at a high RH, but at a low RH, the network fails to conduct as a result of a decrease in water content accompanied by structural stabilization.
机译:通过将层状磷酸锡水合物[Sn(HPO_4)2·nH_2O(SnP)]的纳米片分散在磺化聚醚醚(SPES)中,SnP含量为0-40%(体积)来制备有机/无机复合膜。研究了SPES / SnP纳米片(SnP-NS)复合膜的稳定性和质子电导率,并与SPES / SnP颗粒(SnP-P)复合膜进行了比较。通过热重分析,差热分析和漫反射傅立叶变换红外光谱法评价的化学稳定性在两种复合膜中均得到改善。 SPES / SnP-NS复合膜的结构稳定性的改善比SPES / SnP-P的膜更明显。结果表明,SnP的剥落增加了SPES-SnP界面的面积,并扩展了氢键网络的连通性。含有10%(体积)SnP-NS(SPES / SnP-NS10%(体积))的复合膜在饱和水蒸气压下于150°C时具有5.9×10-2 S cm-1的高电导率。尽管SPES / SnP-NS10vol。%中的水比SPES / SnP-P10vol。%或纯SPES中的水少,但是在130°C的高相对湿度下,这些样品中SnP-NS10vol。%的电导率最高( RH)。但是,在低RH下,通过改变SnP-NS的组成不能改善质子传导性。这些结果表明,氢键网络在高RH下可有效地进行质子传导,但在低RH下,由于含水量减少并伴随结构稳定,该网络无法传导。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号