School of Light Industry and Chemical Engineering, Dalian Polytechnic University, Dalian 116034, China.
School of Light Industry and Chemical Engineering, Dalian Polytechnic University, Dalian 116034, China.
Int J Biol Macromol. 2022 Jul 31;213:690-698. doi: 10.1016/j.ijbiomac.2022.06.004. Epub 2022 Jun 6.
Traditional polyolefin separator has the defects of non-degradation and poor wettability with the electrolyte. In this paper, we have designed the porous membrane based on the lignin-containing cellulose nanofibers (LCNFs) from the unbleached pulp by a facile method. In the designed membrane, the amorphous lignin can effectively adjust the dispersion of the cellulose to form a uniform mesoporous structure. And the abundant oxygen-containing functional groups both in cellulose and lignin can promote the affinity of the membrane with the electrolyte. Finally, the prepared the LCNF porous membrane shows a high electrolyte uptake of 276 % and high ionic conductivity of 1.86 mS cm. As the separator for LIBs, the batteries with high-voltage LiV(PO) as cathode (up to 4.8 V), the batteries displayed 183 mAh g with the energy density of 669 Wh kg, indicating the good application potential in high-energy LIBs. More importantly, the LCNF membrane made from the unbleached pulp has low cost and it can degraded in soil only after 16 days, which can largely reduce environment pollution of the LIBs. This research provided an efficient and low-cost method to fabricate a membrane with good biodegradability and high electrochemical performance for LIBs.
传统的聚烯烃隔膜存在不可降解和与电解质润湿性差的缺陷。在本文中,我们通过简便的方法,以未漂浆中的含木质素纤维素纳米纤维(LCNFs)为基础设计了多孔膜。在设计的膜中,无定形木质素可有效调节纤维素的分散,形成均匀的介孔结构。并且纤维素和木质素中丰富的含氧官能团可促进膜与电解质的亲和性。最后,所制备的 LCNF 多孔膜表现出高的电解质吸收率 276%和高的离子电导率 1.86 mS cm。作为 LIBs 的隔膜,用高压 LiV(PO)作为正极(高达 4.8 V)的电池,电池显示出 183 mAh g 的比容量和 669 Wh kg 的能量密度,表明其在高能量 LIBs 中有良好的应用潜力。更重要的是,由未漂浆制成的 LCNF 膜成本低,在土壤中仅 16 天后即可降解,可大大减少 LIBs 对环境的污染。这项研究为制造具有良好生物降解性和高电化学性能的 LIBs 膜提供了一种高效且低成本的方法。