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首页> 外文期刊>Advanced Functional Materials >Direct Graphene Transfer and Its Application to Transfer Printing Using Mechanically Controlled, Large Area Graphene/Copper Freestanding Layer
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Direct Graphene Transfer and Its Application to Transfer Printing Using Mechanically Controlled, Large Area Graphene/Copper Freestanding Layer

机译:直接石墨烯转移及其在机械控制的大面积石墨烯/铜独立层转移印刷中的应用

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Direct graphene transfer is an attractive candidate to prevent graphene damage, which is a critical problem of the conventional wet transfer method. Direct graphene transfer can fabricate the transferred graphene film with fewer defects by using a polymeric carrier. Here a unique direct transfer method is proposed using a 300 nm thick copper carrier as a suspended film and a transfer printing process by using the polydimethylsiloxane (PDMS) stamp under controlled peeling rate and modulus. Single and multilayer graphene are transferred to flat and curved PDMS target substrate directly. With the transfer printing process, the transfer yield of a trilayer graphene with 1000 mu m s(-1) peeling rate is 68.6% of that with 1 mu m s(-1) peeling rate. It is revealed that the graphene transfer yield is highly related to the storage modulus of the PDMS stamp: graphene transfer yield decreases when the storage modulus of the PDMS stamp is lower than a specific threshold value. The relationship between the graphene transfer yield and the interfacial shear strain of the PDMS stamp is studied by finite-element method simulation and digital image correlation.
机译:直接石墨烯转移是防止石墨烯损坏的有吸引力的候选方法,这是常规湿转移方法的关键问题。通过使用聚合物载体,直接石墨烯转移可以制造具有较少缺陷的转移石墨烯薄膜。在这里,提出了一种独特的直接转印方法,该方法使用厚度为300 nm的铜载体作为悬浮膜,并使用聚二甲基硅氧烷(PDMS)压模在受控的剥离速率和模量下进行转印。将单层和多层石墨烯直接转移到平坦和弯曲的PDMS目标基材上。通过转移印刷工艺,剥离速率为1000μms(-1)的三层石墨烯的转移产率为剥离率为1μms(-1)时的转移产率的68.6%。揭示了石墨烯转移产率与PDMS印模的储能模量高度相关:当PDMS印戳的储能模量低于特定阈值时,石墨烯转移产率降低。通过有限元方法模拟和数字图像相关性研究了PDMS印模的石墨烯转移产率与界面剪切应变之间的关系。

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