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Synthesis and characterization of electrolyte substrate materials based on hyperbranched polyurethane elastomers for anodic bonding

机译:基于超支化聚氨酯弹性体的电解质衬底材料对阳极粘接的合成与表征

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摘要

A series of hyperbranched polyurethane elastomers (PEO-HBPUEs) as polymer electrolyte substrate materials was developed for anodic bonding with aluminum (Al) foil in micro-electro-mechanical system (MEMS) devices. The PEO-HBPUEs were prepared by pre-polymerization method with toluene-2,4-diisocyanate(TDI), polypropylene glycol (PPG), 1,4-butanediol(BDO), trimethylolpropane(TMP), lithium bis(trifluoromethanesulphonyl)imide (LiTFSI), and polyethylene oxide (PEO)-based electrolyte in varying proportions via solution casting technique at room temperature. All prepared PEO-HBPUEs exhibited low glass transition temperatures, good thermal stabilities, and suitable mechanical properties. The XRD results showed that PEO-HBPUEs are amorphous, and LiTFSI was well dissolved in the polymer matrix. The component of PEO-based electrolyte in PEO-HBPUEs contributed to increase the ionic conductivity, of which the highest value reached 1.23 x 10(-3) S/cm at 75 degrees C for PEO-HBPUE4. The anodic bonding of PEO-HBPUE substrate with Al foil was conducted by the coupling action of electric field, temperature field, and pressure field. A clear intermediate bonding layer between the substrate and Al foil was observed and the elements diffusion around bonding layer can be detected by SEM, indicating PEO-HBPUEs and Al foil have been jointed together successfully. The highest tensile strength of the bonding interface of PEO-HBPUE4/Al reached 1.88 MPa. All results demonstrated that the prepared PEO-HBPUEs materials would be promising substrates for flexible MEMS device that can be applied to flexible packaging by anodic bonding technology.
机译:开发了一系列超支化聚氨酯弹性体(PEO-HBPUEs)作为聚合物电解质基底材料,用于微电子机械系统(MEMS)器件中铝箔的阳极连接。以甲苯二异氰酸酯(TDI)、聚丙二醇(PPG)、1,4-丁二醇(BDO)、三羟甲基丙烷(TMP)、双(三氟甲烷磺酰)锂酰亚胺(LiTFSI)和聚氧化乙烯(PEO)基电解液为原料,在室温下通过溶液浇铸技术以不同比例预聚合法制备PEO-HBPUE。所有制备的PEO-HBPUE均表现出较低的玻璃化转变温度、良好的热稳定性和合适的机械性能。XRD结果表明,PEO-HBPUE为非晶态,LiTFSI在聚合物基体中溶解良好。PEO-HBPUE中PEO基电解质的成分有助于提高离子电导率,其中PEO-HBPUE4在75℃时的最高值达到1.23 x 10(-3)S/cm。PEO-HBPUE基板与铝箔的阳极连接是通过电场、温度场和压力场的耦合作用进行的。结果表明,PEO-HBPUEs与铝箔之间形成了一层清晰的中间结合层,结合层周围的元素扩散通过SEM观察到,表明PEO-HBPUEs与铝箔已成功结合。PEO-HBPUE4/Al键合界面的最高拉伸强度达到1.88MPa。所有结果表明,制备的PEO-HBPUEs材料有望成为柔性MEMS器件的衬底,可通过阳极键合技术应用于柔性封装。

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