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Shear Thickening Electrolyte Built from Sterically Stabilized Colloidal Particles

机译:从空间稳定的胶体颗粒构建的剪切增稠电解质

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We present a method to prepare shear thickening electrolytes consisting of silica nanoparticles in conventional liquid electrolytes with limited flocculation. These electrolytes rapidly and reversibly stiffen to solidlike behaviors in the presence of external shear or high impact, which is promising for improved lithium ion battery safety, especially in electric vehicles. However, in initial chemistries the silica nanoparticles aggregate and/or sediment in solution over time. Here, we demonstrate steric stabilization of silica colloids in conventional liquid electrolyte via surface-tethered PMMA brushes, synthesized via surface-initiated atom transfer radical polymerization. The PMMA increases the magnitude of the shear thickening response, compared to the uncoated particles, from 0.311 to 2.25 Pa s. Ultrasmall-angle neutron scattering revealed a reduction in aggregation of PMMA-coated silica nanoparticles compared to bare silica nanoparticles in solution under shear and at rest, suggesting good stabilization. Conductivity tests of shear thickening electrolytes (30 wt % solids in electrolyte) at rest were performed with interdigitated electrodes positioned near the meniscus of electrolytes over the course of 24 h to track supernatant formation. Conductivity of electrolytes with bare silica increased from 10.1 to 11.6 mS cm(-1) over 24 h due to flocculation. In contrast, conductivity of electrolytes with PMMA-coated silica remained stable at 6.1 mS cm(-1) over the same time period, suggesting good colloid stability.
机译:我们介绍一种制备由常规液体电解质中的二氧化硅纳米颗粒组成的剪切增稠电解质的方法,其絮凝有限。这些电解质在外部剪切或高冲击的存在下快速且可逆地加强到固体剪切行为,这是有助于改善锂离子电池安全性的,特别是在电动车辆中。然而,在初始化学中,硅纳米粒子在溶液中聚集和/或沉积物随时间随时间的推移。这里,我们通过表面束缚的PMMA刷子证明了常规液体电解质中的二氧化硅胶体的空间稳定,通过表面引发的原子转移自由基聚合合成。与未涂覆的颗粒相比,PMMA增加了0.311至2.25Pa的剪切增稠响应的幅度。超声角中子散射显示PMMA涂覆的二氧化硅纳米粒子的聚集的减少与剪切下的溶液中的裸二氧化硅纳米粒子和静止,表明良好的稳定性。通过在24小时的过程中定位在电解质的弯月面附近,进行静止的剪切增稠电解质(电解质中30wt%固体)的电导率试验,以跟踪上清液形成。由于絮凝,具有裸二氧化硅的电解质电解能量从10.1至11.6ms(-1)增加到24小时。相反,在同一时间段内,用PMMA涂覆的二氧化硅的电解质的电解能在6.1ms cm(-1)中保持稳定,表明良好的胶体稳定性。

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