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Homogeneous titanium hydroxide yields hydroxyl decorated nanofiber separator with improved electrolyte uptake and device capacitance

机译:丙氧化钛氢氧化产量,具有改进的电解质吸收和装置电容,含羟基的纳米纤维分离器

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摘要

Good wettability of separators in batteries and capacitors is crucial for performance. Titanium hydroxide (Ti(OH)(x)) has been shown to greatly improve the wettability of polyvinylidene fluoride (PVDF) nanofibers (NFs). In this work, PVDF/Ti(OH)(x) NFs were evaluated for their potential use as separators. Results show that PVDF NFs incorporated with Ti(OH)(x) have improved electrolyte uptake (EU) between 550 and 1200 EU% compared to untreated PVDF with less than 100 EU%. Significant improvements in capacitance are seen from capacitors utilizing PVDF/Ti(OH)(x) NF separators with the best performing PVDF/Ti(OH)(x) NF at 15 wt% Ti(OH)(x) with 446.8 mF/cm(2) compared to untreated PVDF NF separator with 262.7 mF/cm(2). (c) 2020 Elsevier B.V. All rights reserved.
机译:电池和电容器中分离器的良好润湿性对于性能至关重要。已经显示氢氧化钛(Ti(OH)(X))大大提高了聚偏二氟乙烯(PVDF)纳米纤维(NFS)的润湿性。在这项工作中,评估PVDF / TI(OH)(X)NFS作为分离器的潜在用途。结果表明,与Ti(OH)(X)掺入的PVDF NFS与未处理的PVDF相比,在550和1200 EU%之间具有改善的电解质摄取(EU),该PVDF具有小于100 EU%。从利用PVDF / Ti(OH)(X)NF分离器的电容器,在15wt%ti(x)中的最佳性Pvdf / ti(x)nf,具有446.8mf / cm (2)与未处理的PVDF NF隔膜相比,具有262.7mF / cm(2)。 (c)2020 Elsevier B.v.保留所有权利。

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