Vapor-solid interfacial reaction and polymerization for wafer-scale uniform and ultrathin two-dimensional organic films

被引:1
|
作者
Yao, Wenqian [1 ,2 ]
Yang, He [1 ]
Zhang, Qingsong [1 ]
Shi, Longxian [1 ,2 ]
Sun, Jianzhe [1 ]
Guo, Yunlong [1 ]
Jiang, Lang [1 ]
Wu, Bin [1 ]
Liu, Yunqi [1 ,2 ]
机构
[1] Chinese Acad Sci, Inst Chem, Beijing Natl Lab Mol Sci, Key Lab Organ Solids, Beijing 100190, Peoples R China
[2] Univ Chinese Acad Sci, Sino Danish Coll, Sino Danish Ctr Educ & Res, Beijing 100049, Peoples R China
基金
中国国家自然科学基金;
关键词
organic films; interface; chemical vapor deposition; copper catalyst; debromination; CHARGE-TRANSPORT; CRYSTALLINE; TRANSISTORS; GRAPHENE; COPPER;
D O I
10.1007/s40843-021-1918-x
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Chemical vapor deposition is a conventional synthesis method for growing large-scale and high-quality two-dimensional materials, such as graphene, hexagonal boron nitride, and transition-metal dichalcogenides. For organic films, solution-based methods, such as inkjet printing, spin coating, and drop and micro-contact printing, are commonly used. Herein, we demonstrate a general method for growing wafer-scale continuous, uniform, and ultrathin (2-5 nm) organic films. This method is based on a copper (Cu) surface-mediated reaction and polymerization of several equivalent bromine (Br)-containing pi-conjugated small molecules (C12S3Br6, C24H4O2Br2, and C24H12Br2N4), in which local surface-mediated polymerization and internal pi-pi interactions among organic molecules are responsible for the dimension and uniformity control of the thin films. Specifically, the growth rate and morphology of thin films were found to be Cu-facet-dependent, and single-crystal Cu(111) surfaces could improve the uniformity of thin films. In addition, the number of Br groups and size of organic molecules were critical for crystallinity and thin-film formation. This method can be used to fabricate heterostructures, such as organic film/graphene, giving room for various functional materials and device applications.
引用
收藏
页码:1577 / 1585
页数:9
相关论文
共 37 条
  • [21] Solutions Are the Problem: Ordered Two-Dimensional Covalent Organic Framework Films by Chemical Vapor Deposition
    Daum, Jeremy P.
    Ajnsztajn, Alec
    Iyengar, Sathvik Ajay
    Lowenstein, Jacob
    Roy, Soumyabrata
    Gao, Guan-hui
    Tsai, Esther H. R.
    Ajayan, Pulickel M.
    Verduzco, Rafael
    ACS NANO, 2023, 17 (21) : 21411 - 21419
  • [22] Chemical vapor deposition: a potential tool for wafer scale growth of two-dimensional layered materials
    El Hammoumi, Mohammed
    Chaudhary, Vivek
    Neugebauer, P.
    El Fatimy, A.
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2022, 55 (47)
  • [23] Two-dimensional MoSe2/graphene heterostructure thin film with wafer-scale continuity via van der Waals epitaxy
    Dai, Tian-Jun
    Chen, Yu-Qing
    Zhou, Zhang-Yu
    Sun, Jian
    Peng, Xiao-Shan
    Liu, Xing-Zhao
    CHEMICAL PHYSICS LETTERS, 2020, 755 (755)
  • [24] PMMA-Etching-Free Transfer of Wafer-scale Chemical Vapor Deposition Two-dimensional Atomic Crystal by a Water Soluble Polyvinyl Alcohol Polymer Method
    Huynh Van Ngoc
    Qian, Yongteng
    Han, Suk Kil
    Kang, Dae Joon
    SCIENTIFIC REPORTS, 2016, 6
  • [25] Low-Cost Preparation of Wafer-Scale Au(111) Single Crystals for the Epitaxy of Two-Dimensional Layered Materials
    Hu, Jingyi
    Wang, Jialong
    Yang, Pengfei
    Quan, Wenzhi
    Wang, Xuan
    Ding, Haoxuan
    Fu, Jiatian
    Peng, You
    Zhang, Ronghua
    Wang, Honggang
    Xie, Liming
    He, Ke
    Wang, Lili
    Wei, Wei
    Zhang, Leining
    Liu, Zhongfan
    Zhang, Yanfeng
    ACS NANO, 2025, 19 (04) : 4973 - 4982
  • [26] Wafer-scale production of patterned transition metal ditelluride layers for two-dimensional metal-semiconductor contacts at the Schottky-Mott limit
    Song, Seunguk
    Sim, Yeoseon
    Kim, Se-Yang
    Hwa, Jung
    Oh, Inseon
    Na, Woongki
    Lee, Do Hee
    Wang, Jaewon
    Yan, Shili
    Liu, Yinan
    Kwak, Jinsung
    Chen, Jian-Hao
    Cheong, Hyeonsik
    Yoo, Jung-Woo
    Lee, Zonghoon
    Kwon, Soon-Yong
    NATURE ELECTRONICS, 2020, 3 (04) : 207 - 215
  • [27] Two-dimensional covalent organic framework films prepared on various substrates through vapor induced conversion
    Liu, Minghui
    Liu, Youxing
    Dong, Jichen
    Bai, Yichao
    Gao, Wenqiang
    Shang, Shengcong
    Wang, Xinyu
    Kuang, Junhua
    Du, Changsheng
    Zou, Ye
    Chen, Jianyi
    Liu, Yunqi
    NATURE COMMUNICATIONS, 2022, 13 (01)
  • [28] Wafer-scale integration of two-dimensional materials in high-density memristive crossbar arrays for artificial neural networks
    Chen, Shaochuan
    Mahmoodi, Mohammad Reza
    Shi, Yuanyuan
    Mahata, Chandreswar
    Yuan, Bin
    Liang, Xianhu
    Wen, Chao
    Hui, Fei
    Akinwande, Deji
    Strukov, Dmitri B.
    Lanza, Mario
    NATURE ELECTRONICS, 2020, 3 (10) : 638 - 645
  • [29] Polymer-Free and Dry Patterning of Wafer-Scale Two-Dimensional Semiconductors via van der Waals Delamination
    Ding, Shuimei
    Liu, Yun
    Tao, Quanyang
    Chen, Yang
    Gao, Weiqi
    Niu, Wencheng
    Liu, Chang
    Li, Yunxin
    Liu, Xiao
    Gao, Jinghui
    Niu, Kaixin
    Kong, Lingan
    Ma, Likuan
    Lu, Donglin
    Wang, Yiliu
    Liao, Lei
    Feng, Qingliang
    Liu, Yuan
    NANO LETTERS, 2025, 25 (04) : 1689 - 1696
  • [30] Wafer-Scale Fabrication of Two-Dimensional PtS2/PtSe2 Heterojunctions for Efficient and Broad band Photodetection
    Yuan, Jian
    Sun, Tian
    Hu, Zhixin
    Yu, Wenzhi
    Ma, Weiliang
    Zhang, Kai
    Sun, Baoquan
    Lau, Shu Ping
    Bao, Qiaoliang
    Lin, Shenghuang
    Li, Shaojuan
    ACS APPLIED MATERIALS & INTERFACES, 2018, 10 (47) : 40614 - 40622