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Rendering Wood Veneers Flexible and Electrically Conductive through Delignification and Electroless Ni Plating

机译:通过卖卖和化学型镍镀层,渲染木贴面柔性和导电

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摘要

Wood has unique advantages. However, the rigid structure and intrinsic insulating nature of wood limit its applications. Herein, a two-step process is developed to render wood veneers conductive and flexible. In the first step, most of the lignin and hemicellulose in the wood veneer are removed by hydrothermal treatment. In the second step, electroless Ni plating and subsequent pressing are carried out. The obtained Ni-plated veneer is flexible and bendable, and has a high tensile strength of 21.9 and 4.4 MPa along and across the channel direction, respectively, the former of which is considerably higher than that of carbon cloth and graphene foam. Moreover, this product exhibits high electrical conductivity around 1.1 × 103 S m−1, which is comparable to that of carbon cloth and graphene foam, and significantly outperforms previously reported wood-based conductors. This work reveals an effective strategy to transform cheap and renewable wood into a high value-added product that rivals expensive carbon cloth and graphene foam. The obtained product is particularly promising as a current collector for flexible and wearable electrochemical energy storage devices such as supercapacitors and Li-ion batteries.
机译:木材具有独特的优势。然而,木材的刚性结构和内在绝缘性质限制其应用。这里,开发了一种两步工艺,以使木饰面导电和柔性。在第一步中,通过水热处理除去木胶质贴粒中的大多数木质素和半纤维素。在第二步骤中,进行化学镀Ni电镀和随后的压制。所获得的Ni镀型胶合剂是柔性且可弯曲的,并且分别具有21.9和4.4MPa的高抗拉强度,分别在通道方向上,其前者比碳布和石墨烯泡沫相当高。此外,该产品具有大约1.1×103升M-1的高电导率,其与碳布和石墨烯泡沫相当,并且显着优于先前报告的木材导体。这项工作揭示了一种有效的策略,将便宜和可再生木材转化为高附加值的产品,竞争昂贵的碳布和石墨烯泡沫。所得产品特别希望作为集电器,用于柔性和可穿戴电化学能量存储装置,例如超级电容器和锂离子电池。

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