[口头报告]Electroactive and breathable protective membranes by surface engineering of dielectric nanohybrids at poly(lactic acid) nanofibers with excellent self-sterilization properties
00
days
00
hours
00
minutes
00
seconds
00
days
00
hours
00
minutes
00
seconds

[口头报告]Electroactive and breathable protective membranes by surface engineering of dielectric nanohybrids at poly(lactic acid) nanofibers with excellent self-sterilization properties

Electroactive and breathable protective membranes by surface engineering of dielectric nanohybrids at poly(lactic acid) nanofibers with excellent self-sterilization properties
编号:200 稿件编号:340 访问权限:仅限参会人 更新:2024-05-15 17:39:26 浏览:472次 口头报告

报告开始:暂无开始时间 (Asia/Shanghai)

报告时间:暂无持续时间

所在会议:[暂无会议] » [暂无会议段]

暂无文件

摘要
Abstract: The demand for healthcare products, especially wearable smart masks, has been increasing in recent years. The biosafety and degradability of smart masks are crucial for human health and environmental protection, we report a stereocomplexed poly(lactic acid) fiber membrane (SC-PLA/CZ NFMs) with high electroactivity for air filtration and self-powered respiratory monitoring systems. The structurally regular nanohybrid structure (CNT@ZIF-8) with large specific surface area was successfully synthesised by inducing the growth of zeolite imidazolium ester framework-8 (ZIF-8) on carbon nanotubes (CNTs) via microwave-assisted synthesis method. Based on the electrospinning spinning-electrospray technique, CNT@ZIF-8 was successfully embedded onto PLA fibers, and PLA composite nanofibrous membranes (SC-PLA/CZ) with different fiber diameters were prepared by modulating the mass fraction of CNT@ZIF-8 (6, 8, 10 wt%). The SC-PLA/CZ NFMs demonstrated an effective ability to intercept air particles. The interception efficiency for PM0.3 and PM2.5 was up to 88.3% and 96.1% at an air flow rate of 32 L/min, respectively. Additionally, the pressure drop remained relatively low at 67.6 Pa. Furthermore, this SC-PLA/CZ NFMs can monitor the respiratory status without external power supply for disease prevention as well as medical diagnosis. This study presents a simple mask filter with both filtration and monitoring functions that has great potential for self-powered health diagnostics.
 
关键字
electroactivity,biodegradable nanofibers,air filtration
报告人
亮 江
中国矿业大学

稿件作者
亮 江 中国矿业大学
欢 徐 中国矿业大学
发表评论
验证码 看不清楚,更换一张
全部评论

联系我们

投稿事宜:张老师
电话:0516-83995113
会务事宜:张老师
电话:0516-83590258
酒店事宜:张老师
电话:15852197548
会展合作:李老师
电话:0516-83590246
登录 注册缴费 提交摘要 酒店预订