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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Laser-Induced Graphitization of Cellulose Nanofiber Substrates under Ambient Conditions
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Laser-Induced Graphitization of Cellulose Nanofiber Substrates under Ambient Conditions

机译:环境条件下激光诱导纤维素纳米纤维基材的石墨化

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摘要

A CO2 laser engraver was used to synthesize conductive graphitic carbon directly on cellulose nanofiber (CNF) substrates under ambient conditions. CNFs were prepared via a TEMPO (2,2,6,6-tetramethylpiperidin-1-oxyl radical)-mediated oxidation reaction of bleached pulp, and a porous paper or a transparent film was obtained based on the drying conditions employed. Laser irradiation on a porous CNF paper led to the formation of amorphous carbon owing to an increase in temperature. Subsequent lasing converted the amorphous carbon to conductive graphitic carbon. The conductivity of this carbon increased from 3 mu S/cm to 60 mS/cm as the number of irradiations increased from one to four. Although the CNF paper was converted to graphitic carbon by means of multiple lasing, graphitic carbon was obtained for the CNF film by a single run of lasing owing to its very low oxygen permeability. The conversion of the CNF substrates to graphitic carbon under ambient conditions was attributed to the presence of sodium in CNFs. A control experiment using a CNF in which sodium was replaced with hydrogen demonstrated that only amorphous carbon was produced by laser exposure.
机译:在环境条件下,使用CO2激光雕瓶在纤维素纳米纤维(CNF)底物上直接在纤维素纳米纤维(CNF)底物上合成导电石墨碳。 CNF通过漂移(2,2,6,6-四甲基哌啶-1-氧基自由基)介导的漂白纸浆的氧化反应制备,基于所用干燥条件获得多孔纸或透明膜。在多孔CNF纸上激光照射导致由于温度的增加而形成无定形碳。随后的激光将无定形碳转化为导电石墨碳。该碳的电导率从3μS/ cm到60ms / cm增加,因为照射的次数从一到四增加增加。尽管通过多次激光将CNF纸转化为石墨碳,但由于其非常低的透氧性而通过一次激活获得CNF膜的石墨碳。在环境条件下将CNF基材转化为石墨碳归因于CNF中的钠。使用CNF的对照实验,其中用氢替代钠,表明仅通过激光暴露产生非晶碳。

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