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Electron beam-based fabrication of crosslinked hydrophilic carbon electrodes and their application for capacitive deionization

机译:基于电子束的交联亲水性碳电极的制备及其在电容去离子中的应用

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摘要

In this research, we demonstrated that a crosslinked hydrophilic carbon electrode with better electrochemical performance than hydrophobic counterparts can easily be produced using room-temperature, quick electron-beam irradiation with a hydrophilic methacryloyl-substituted polyvinyl alcohol (SPVA) binder. The SPVA binder was effectively synthesized by trans-esterification of PVA with glycidyl methacrylate. The hydrophilic carbon electrode cast on a graphite sheet from a slurry of activated carbon (AC) and SPVA was irradiated with an electron beam to form a crosslinked structure. The analytical results in terms of the morphology, solvent resistance, chemical composition, and contact angle revealed that the carbon electrode was completely crosslinked by electron-beam irradiation even at the dose of 100 kGy (irradiation time = 180 s). The new electrode exhibited superior water-wettability due to the hydrophilic functionality of SPVA. Furthermore, the hydrophilic carbon electrode with an AC?:?SPVA composition of 90?:?10 and an absorbed dose of 200 kGy, exhibited a specific capacitance of 127 F g ~(?1) (67% higher than the hydrophobic poly(vinylidene fluoride) (PVDF)-based counterpart with the same composition). The specific capacitance was further improved to 160 F g ~(?1) with an increase in the AC content. The hydrophilic carbon electrode exhibited noticeably better desalination efficiency than the hydrophobic PVDF-based counterpart.
机译:在这项研究中,我们证明了使用亲水性甲基丙烯酰基取代的聚乙烯醇(SPVA)粘合剂在室温下快速进行电子束辐照,可以轻松生产出比疏水性对应物更好的电化学性能的交联亲水性碳电极。 SPVA粘合剂是通过PVA与甲基丙烯酸缩水甘油酯的酯交换反应而有效合成的。用电子束辐照从活性炭(AC)和SPVA的浆液浇铸在石墨板上的亲水性碳电极,以形成交联结构。在形态,耐溶剂性,化学组成和接触角方面的分析结果表明,即使在100kGy的剂量下(辐照时间= 180s),碳电极也通过电子束辐照而完全交联。由于SPVA的亲水功能,新电极表现出优异的水润湿性。此外,AC 90 ∶SP 10组成为AC 3 ∶SPVA 10且吸收剂量为200 kGy的亲水性碳电极的比电容为127 F g〜(Δ1)(比疏水性聚电极高67%)。偏二氟乙烯)(PVDF)的相同成分。随着AC含量的增加,比电容进一步提高到160F g〜(Δ1)。亲水性碳电极比基于疏水性PVDF的电极表现出明显更好的脱盐效率。

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