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Cellulose Nanopaper Cross-Linked Amino Graphene/Polyaniline Sensors to Detect CO2 Gas at Room Temperature

机译:纤维素纳米纸交联的氨基石墨烯/聚苯胺传感器可在室温下检测二氧化碳气体

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摘要

A nanocomposite of cross-linked bacterial cellulose–amino graphene/polyaniline (CLBC-AmG/PANI) was synthesized by covalent interaction of amino-functionalized graphene (AmG) AmG and bacterial cellulose (BC) via one step esterification, and then the aniline monomer was grown on the surface of CLBC-AmG through in situ chemical polymerization. The morphological structure and properties of the samples were characterized by using scanning electron microscopy (SEM), and thermal gravimetric analyzer (TGA). The CLBC-AmG/PANI showed good electrical-resistance response toward carbon dioxide (CO ) at room temperature, compared to the BC/PANI nanopaper composites. The CLBC-AmG/PANI sensor possesses high sensitivity and fast response characteristics over CO concentrations ranging from 50 to 2000 ppm. This process presents an extremely suitable candidate for developing novel nanomaterials sensors owing to easy fabrication and efficient sensing performance.
机译:通过一步一步酯化氨基官能化石墨烯(AmG)AmG和细菌纤维素(BC)的共价相互作用,合成了一种交联细菌纤维素-氨基石墨烯/聚苯胺的纳米复合材料(CLBC-AmG / PANI)。通过原位化学聚合法在CLBC-AmG的表面上生长了H2O。使用扫描电子显微镜(SEM)和热重分析仪(TGA)对样品的形态结构和性能进行表征。与BC / PANI纳米纸复合材料相比,CLBC-AmG / PANI在室温下对二氧化碳(CO)表现出良好的电阻响应。 CLBC-AmG / PANI传感器在50至2000 ppm的CO浓度范围内具有高灵敏度和快速响应特性。由于易于制造和有效的传感性能,该工艺为开发新型纳米材料传感器提供了极为合适的候选方案。

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