热处理的AgNW / PDMS / PU纳米纤维-网洗后孔隙率、电学和表面性质的变化

ty10086 提交于 周三, 08/25/2021 - 15:48
文章英文标题
Changes in Porosity, Electrical and Surface Properties after Laundering of Heat-treated AgNW/PDMS/PU Nanofiber-web
正文
本研究考察了热处理和聚二甲基硅氧烷( PDMS )涂层对耐洗性的影响,考察了热处理银纳米线( AgNW ) / PDMS /聚氨酯( PU )纳米纤维网在洗前后的孔隙率、电阻和表面性能的变化。为制备导电试样,采用PU纳米纤维-网状结构、1wt % AgNW在乙醇中分散、2种PDMS前驱体。共制备了4个样品:样品A ( The AgNW / PU nano-web )、样品AH ( The heat-treatment AgNW / PU nano-web )、样品AP ( The PDMS-clad AgNW / PU nano-web )和样品AHP ( The heat-treatment AgNW / PDMS / PU nano-web )。标本按ISO 6330规定条件冲洗后脱水。为了研究单一洗涤周期后孔隙率的变化,测定了平均孔径和孔径分布。测试了试样的线性电阻和微观表面形貌。因此,样品AH中由于热处理而分布了许多微孔。试样AH经清洗后仍有微孔存在,热处理提高了耐洗性。同样,试样AH的电阻在水洗后也只是略有变化,这是因为热处理加强了纳米纤维与银纳米线之间的结合,使得银纳米线即使在水洗后也充分保留在试样表面。而且,试件AH表明,银纳米线即使洗净后也会形成网络,均匀地复盖在试件表面。这一结果影响了前述电气性能,实际上无论洗液与否,试件AH的电阻都是最低的。然而,由于PDMS涂层的存在,无法测量样品AP和样品AHP的孔隙率。因此,热处理影响了耐洗性和电导率的提高,但PDMS涂层堵塞了纳米纤维网的微孔,使其具有更高的初始电阻。
文章内容(英文)
In this study, to investigate the effects of heat treatment and polydimethylsiloxane (PDMS) coating on durability to laundering, the changes in the porosity, electrical resistance, and surface property of the heat-treated silver nanowire (AgNW)/PDMS/polyurethane (PU) nanofiber-web before and after laundering were examined. To prepare the conductive specimens, PU nanofiber-web, 1 wt% of AgNW dispersion in ethanol, and two types of PDMS precursors were used. A total of four specimens were prepared: Specimen A (The AgNW/PU nanofiber-web), Specimen AH (The heat-treated AgNW/PU nanofiber-web), Specimen AP (The PDMS-coated AgNW/PU nanofiber-web), and Specimen AHP (The heat-treated AgNW/PDMS/PU nanofiber-web). The specimen was rinsed and dehydrated after laundering under the conditions according to ISO 6330. To investigate the changes of porosity after a single washing cycle, mean pore diameter and pore size distribution were measured. Linear electrical resistance and microscopic surface view of the specimen were evaluated. As a result, many micro-pores were distributed in Specimen AH because of the heat treatment. After laundering, Specimen AH still had the micro-pores, and thus, the heat treatment improved the durability to laundering. Also, the electrical resistance of Specimen AH was only changed slightly even after laundering, which was because the heat treatment strengthened the bonding between the nanofibers and the silver nanowires, thus the silver nanowires sufficiently remained on the specimen surface even after laundering. And, Specimen AH showed that the silver nanowires formed a network even after laundering and were evenly covered with silver nanowires onto the specimen surface. This result affected the aforementioned electrical performance, and in fact, the electrical resistance of Specimen AH was the lowest regardless of laundering. However, it was impossible to measure the porosity of Specimen AP and Specimen AHP due to the PDMS coating. Therefore, the heat treatment affected the durability to laundering as well as the electrical conductivity to increase, but PDMS coating blocked the micro-pores of the nanofiber-web and enabled higher initial resistance.
来源出处
Journal|[J]Fibers and Polymers2021. PP 1-8
DOI
https://doi.org/10.1007/S12221-021-0042-X

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