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首页> 外文期刊>Advanced Materials >Turning Trash into Treasure: Additive Free MXene Sediment Inks for Screen-Printed Micro-Supercapacitors
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Turning Trash into Treasure: Additive Free MXene Sediment Inks for Screen-Printed Micro-Supercapacitors

机译:把垃圾变成珍宝:用于丝网印刷的微型超级电容器的无添加剂MXene沉积油墨

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Printed functional conductive inks have triggered scalable production of smart electronics such as energy-storage devices, antennas, wearable electronics, etc. Of particular interest are highly conductive-additive-free inks devoid of costly postdeposition treatments to eliminate sacrificial components. Due to the high filler concentration required, formulation of such waste-free inks has proven quite challenging. Here, additive-free, 2D titanium carbide MXene aqueous inks with appropriate rheological properties for scalable screen printing are demonstrated. Importantly, the inks consist essentially of the sediments of unetched precursor and multilayered MXene, which are usually discarded after delamination. Screen-printed structures are presented on paper with high resolution and spatial uniformity, including micro-supercapacitors, conductive tracks, integrated circuit paths, and others. It is revealed that the delaminated nanosheets among the layered particles function as efficient conductive binders, maintaining the mechanical integrity and thus the metallic conductive network. The areal capacitance (158 mF cm(-2)) and energy density (1.64 mu Wh cm(-2)) of the printed micro-supercapacitors are much superior to other devices based on MXene or graphene. The ink formulation strategy of "turning trash into treasure" for screen printing highlights the potential of waste-free MXene sediment printing for scalable and sustainable production of next-generation wearable smart electronics.
机译:印刷功能导电油墨已经触发了智能电子产品(如储能设备,天线,可穿戴电子产品等)的可扩展生产。特别令人关注的是高度无导电添加剂的油墨,无需进行昂贵的沉积后处理即可消除牺牲性组件。由于需要高的填充剂浓度,因此证明这种无废墨的配制非常有挑战性。在此,展示了具有可扩展丝网印刷的适当流变特性的无添加剂二维碳化钛MXene水性油墨。重要的是,油墨主要由未蚀刻的前体和多层MXene的沉积物组成,通常在分层后将其丢弃。丝网印刷的结构以高分辨率和空间均匀性呈现在纸上,包括微型超级电容器,导电迹线,集成电路路径等。揭示了层状颗粒之间的分层的纳米片用作有效的导电粘合剂,从而保持了机械完整性并因此保持了金属导电网络。印刷的微型超级电容器的面电容(158 mF cm(-2))和能量密度(1.64μWh cm(-2))远远优于其他基于MXene或石墨烯的器件。丝网印刷“变废为宝”的油墨配方策略凸显了无浪费的MXene沉积物印刷在可扩展和可持续生产下一代可穿戴智能电子产品中的潜力。

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