Literature DB >> 34184867

Defect-Free Mechanical Graphene Transfer Using n-Doping Adhesive Gel Buffer.

Young-Min Seo1, Wonseok Jang1, Taejun Gu1, Hae-Jun Seok1, Seunghun Han2, Byoung Lyong Choi1, Han-Ki Kim1, Heeyeop Chae3,2, Joohoon Kang1, Dongmok Whang1,3.   

Abstract

The synthesis of uniform low-defect graphene on a catalytic metal substrate is getting closer to the industrial level. However, its practical application is still challenging due to the lack of an appropriate method for its scalable damage-free transfer to a device substrate. Here, an efficient approach for a defect-free, etchant-free, wrinkle-free, and large-area graphene transfer is demonstrated by exploiting a multifunctional viscoelastic polymer gel as a simultaneous shock-free adhesive and dopant layer. Initially, an amine-rich polymer solution in its liquid form allows for conformal coating on a graphene layer grown on a Cu substrate. The subsequent thermally cured soft gel enables the shock-free and wrinkle-free direct mechanical exfoliation of graphene from a substrate due to its strong charge-transfer interaction with graphene and excellent shock absorption. The adhesive gel with a high optical transparency works as an electron doping layer toward graphene, which exhibits significantly reduced sheet resistances without optical transmittance loss. Lastly, the transferred graphene layer shows high mechanical and chemical stabilities under the repeated bending test and exposure to various solvents. This gel-assisted mechanical transfer method can be a solution to connect the missing part between large-scale graphene synthesis and next-generation electronics and optoelectronic applications.

Entities:  

Keywords:  adhesive gel buffer layer; charge transfer; defect-free transfer; electron doping; graphene

Year:  2021        PMID: 34184867     DOI: 10.1021/acsnano.0c10798

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  2 in total

1.  Large-area transfer of two-dimensional materials free of cracks, contamination and wrinkles via controllable conformal contact.

Authors:  Yixuan Zhao; Yuqing Song; Zhaoning Hu; Wendong Wang; Zhenghua Chang; Yan Zhang; Qi Lu; Haotian Wu; Junhao Liao; Wentao Zou; Xin Gao; Kaicheng Jia; Jingyi Hu; Qin Xie; Rui Zhang; Xiaorui Wang; Luzhao Sun; Fangfang Li; Liming Zheng; Ming Wang; Jiawei Yang; Boyang Mao; Tiantian Fang; Fuyi Wang; Haotian Zhong; Wenlin Liu; Rui Yan; Jianbo Yin; Yanfeng Zhang; Yujie Wei; Hailin Peng; Li Lin; Zhongfan Liu
Journal:  Nat Commun       Date:  2022-07-29       Impact factor: 17.694

2.  Integrated wafer-scale ultra-flat graphene by gradient surface energy modulation.

Authors:  Xin Gao; Liming Zheng; Fang Luo; Jun Qian; Jingyue Wang; Mingzhi Yan; Wendong Wang; Qinci Wu; Junchuan Tang; Yisen Cao; Congwei Tan; Jilin Tang; Mengjian Zhu; Yani Wang; Yanglizhi Li; Luzhao Sun; Guanghui Gao; Jianbo Yin; Li Lin; Zhongfan Liu; Shiqiao Qin; Hailin Peng
Journal:  Nat Commun       Date:  2022-09-15       Impact factor: 17.694

  2 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.