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首页> 外文期刊>Nanoscale >Nacre-inspired composite films with high mechanical strength constructed from MXenes and wood-inspired hydrothermal cellulose-based nanofibers for high performance flexible supercapacitors
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Nacre-inspired composite films with high mechanical strength constructed from MXenes and wood-inspired hydrothermal cellulose-based nanofibers for high performance flexible supercapacitors

机译:Nacre-inspired复合高的电影机械强度由MXeneswood-inspired热液纤维素基纳米纤维对高性能灵活超级电容器

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摘要

Two dimensional MXenes with fascinating characteristics of high electrical conductivity, high density and electroactivity show promising applications in various fields. However, the direct applications of MXenes have been limited due to their inferior mechanical properties and easy restacking. Herein, a kind of nacre-like composite film constructed with Ti3C2Tx, cellulose nanofiber (HCNF) and sodium lignosulfonate (Lig) obtained through the hydrothermal process, named Ti3C2Tx/HCNF@Lig, has been successfully synthesized. The hydrothermal cellulose nanofiber (HCNF) film shows an enhanced mechanical strength (114 MPa) compared to that of the CNF film (95 MPa). Wood-inspired HCNF@Lig composite films present an enhanced mechanical tensile strength of up to 133 MPa. Nacre-like deformable Ti3C2Tx/HCNF@Lig(3@1) composite films exhibit high conductivity (up to 1.75 x 10(5) S m(-1)) and mechanical properties (up to 258 MPa). The electrodes of Ti3C2Tx/HCNF@Lig(3@1)(97/3) composite film assembled flexible solid-state supercapacitors possess an excellent volumetric specific capacitance of 748.96 F cm(-3). The corresponding deformable supercapacitors show an excellent energy density of 16.2 W h L-1 and outstanding electrochemical cycling stability. The as-prepared nacre-like Ti3C2Tx/HCNF@Lig composite films with high mechanical properties and electrochemical performance are expected to be practically applied in flexible/wearable energy storage devices.
机译:二维MXenes迷人高导电性的特点,高密度和electroactivity显示有前途在各领域的应用。直接应用MXenes已经有限由于其力学性能和低劣简单的放置。复合膜与Ti3C2Tx构造,纤维素纳米纤维(HCNF)和钠木质素磺酸盐(闲逛)获得通过热液过程,名叫Ti3C2Tx / HCNF@Lig,被成功合成。纤维素纳米纤维(HCNF)电影展示了一个提高机械强度(114 MPa)相比的CNF电影(95 MPa)。复合电影提供了一个增强的机械抗拉强度133 MPa。变形Ti3C2Tx / HCNF@Lig(3 @1)复合薄膜表现出高导电率(1.75 x 10 (5)(1))和力学性能(258 MPa)。电极Ti3C2Tx / HCNF@Lig (3 @1) (97/3)复合膜组装灵活的固体超级电容器具有一个优秀的体积比电容F 748.96厘米(3)。相应的可变形的超级电容器显示一个优秀的能量密度为16.2 W h l - 1和优秀的电化学循环稳定性。的好nacre-like Ti3C2Tx / HCNF@Lig复合薄膜力学性能高和电化学性能预计几乎被应用于挠性/可穿戴能源存储设备。

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