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Room Temperature-Sintering Conductive Ink Fabricated from Oleic-Modified Graphene for the Flexible Electronic Devices

机译:室温插入导电墨水,由油油改装的石墨烯制成,用于柔性电子设备

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摘要

Graphene,a novel 2D nanomaterial,has been intensively studied and utilized in many fields of applications.Graphenebased conductive ink has attracted many scientific researchers due to its flexibility,durability,and,most importantly,high electrical conductivity.However,the low dispensability and high curing temperature have hindered the use of graphene ink in many practical applications.In this work,graphene nanoplatelets(GNPs)were modified with oleic acid to improve dispensability.Then,the modified GNPs were employed as a major component in the conductive ink's formulation.The effects of the oleic acid,binder,and GNPs contents on the conductivity of the prepared ink were studied.The results showed that at the ink's formulation of 0.75% binder and 6% GNPs(modified with 2.5% oleic acid),the lowest resistance with the value of 22 Ω.cm and sheet resistance of 7.56 Ωcm~2 was obtained.Remarkably,the high conductivity of the modified conductive ink on the substrate could also be observed after curing at room temperature,which is advantageous for practical application.The viscosity of the resultant conductive ink could also be adjusted by changing the amount of solvent in the ink's formulation for application of the ink in the pen,painting,or inkjet printing.
机译:石墨烯是一种新颖的2D纳米材料,已在许多应用领域进行了深入的研究和使用。基于授予的导电墨水由于其灵活性,耐用性,最重要的是高电导率,因此吸引了许多科学研究人员。固化温度阻碍了在许多实际应用中使用石墨烯墨水的使用。在这项工作中,用油酸修饰石墨烯纳米纤维素(GNP)以提高可配置性。然后,修改后的GNP被用作导电墨水配方中的主要成分。研究了油酸,粘合剂和GNP的含量对制备墨水电导率的影响。结果表明,在墨水制定0.75%粘合剂和6%GNP(用2.5%油酸修饰)时,具有最低的耐药性,是最低的耐药性获得了22Ω..cm的值和7.56Ωcm〜2的板电阻。可取,也可以观察到基板上修饰的导电墨水的高电导率。 R在室温下固化,这对于实际应用是有利的。还可以通过更改墨水配方中的溶剂量来调整所得导电墨水的粘度,以在笔,绘画或喷墨打印中涂抹墨水。

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