Synthesis of Graphene Nanoribbons by Ambient-Pressure Chemical Vapor Deposition and Device Integration

被引:0
|
作者
机构
[1] Chen, Zongping
[2] Zhang, Wen
[3] Palma, Carlos-Andres
[4] 4,Lodi Rizzini, Alberto
[5] Liu, Bilu
[6] 6,Abbas, Ahmad
[7] 8,Richter, Nils
[8] 4,Martini, Leonardo
[9] Wang, Xiao-Ye
[10] 4,Cavani, Nicola
[11] Lu, Hao
[12] Mishra, Neeraj
[13] Coletti, Camilla
[14] Berger, Reinhard
[15] Klappenberger, Florian
[16] 8,Kläui, Mathias
[17] Candini, Andrea
[18] 4,Affronte, Marco
[19] Zhou, Chongwu
[20] 4,De Renzi, Valentina
[21] 4,Del Pennino, Umberto
[22] Barth, Johannes V.
[23] Räder, Hans Joachim
[24] Narita, Akimitsu
[25] Feng, Xinliang
[26] Müllen, Klaus
来源
Feng, Xinliang (xinliang.feng@tu-dresden.de) | 1600年 / American Chemical Society卷 / 138期
基金
欧洲研究理事会;
关键词
Ambient pressure chemical vapor depositions - Chemical vapor depositions (CVD) - Graphene nanoribbons (GNRs) - Insulating substrates - Microscopic characterization - Molecular building blocks - Nanoscale electronics - Semiconducting materials;
D O I
暂无
中图分类号
学科分类号
摘要
Graphene nanoribbons (GNRs), quasi-one-dimensional graphene strips, have shown great potential for nanoscale electronics, optoelectronics, and photonics. Atomically precise GNRs can be bottom-up synthesized by surface-assisted assembly of molecular building blocks under ultra-high-vacuum conditions. However, large-scale and efficient synthesis of such GNRs at low cost remains a significant challenge. Here we report an efficient bottom-up chemical vapor deposition (CVD) process for inexpensive and high-throughput growth of structurally defined GNRs with varying structures under ambient-pressure conditions. The high quality of our CVD-grown GNRs is validated by a combination of different spectroscopic and microscopic characterizations. Facile, large-area transfer of GNRs onto insulating substrates and subsequent device fabrication demonstrate their promising potential as semiconducting materials, exhibiting high current on/off ratios up to 6000 in field-effect transistor devices. This value is 3 orders of magnitude higher than values reported so far for other thin-film transistors of structurally defined GNRs. Notably, on-surface mass spectrometry analyses of polymer precursors provide unprecedented evidence for the chemical structures of the resulting GNRs, especially the heteroatom doping and heterojunctions. These results pave the way toward the scalable and controllable growth of GNRs for future applications. © 2016 American Chemical Society.
引用
收藏
相关论文
共 50 条
  • [1] Synthesis of Graphene Nanoribbons by Ambient-Pressure Chemical Vapor Deposition and Device Integration
    Chen, Zongping
    Zhang, Wen
    Palma, Carlos-Andres
    Rizzini, Alberto Lodi
    Liu, Bilu
    Abbas, Ahmad
    Richter, Nils
    Martini, Leonardo
    Wang, Xiao-Ye
    Cavani, Nicola
    Lu, Hao
    Mishra, Neeraj
    Coletti, Camilla
    Berger, Reinhard
    Klappenberger, Florian
    Klaui, Mathias
    Candini, Andrea
    Affronte, Marco
    Zhou, Chongwu
    De Renzi, Valentina
    del Pennino, Umberto
    Barth, Johannes V.
    Raeder, Hans Joachim
    Narita, Akimitsu
    Feng, Xinliang
    Muellen, Klaus
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2016, 138 (47) : 15488 - 15496
  • [2] Synthesis and Characterization of Multilayer Hexagonal Graphene Grown by Ambient Pressure Chemical Vapor Deposition
    Abuhimd, Hatem
    FULLERENES NANOTUBES AND CARBON NANOSTRUCTURES, 2015, 23 (12) : 1058 - 1063
  • [3] Ambient-pressure vapor deposition of octanethiol self-assembled monolayers
    Deering, AL
    Van Lue, SM
    Kandel, SA
    LANGMUIR, 2005, 21 (23) : 10260 - 10263
  • [4] Synthesis of Graphene by Low Pressure Chemical Vapor Deposition (LPCVD) Method
    Khan, Sunny
    Ali, Javid
    Harsh
    Husain, M.
    Zulfequar, M.
    RECENT TRENDS IN MATERIALS AND DEVICES, ICRTMD 2015, 2017, 178 : 119 - 123
  • [5] Synthesis and Characterization of Nano-Multilayer Graphene Grown by Ambient Pressure of Chemical Vapor Deposition from Naphthalene/Methanol
    Jimaa, Rawnaq B.
    Majid, Ismail Yassin
    Abdulrazzak, Firas H.
    Hussein, Falah H.
    JOURNAL OF NANOSTRUCTURES, 2023, 13 (03) : 830 - 836
  • [6] Synthesis of crystalline boron nanoribbons and calcium hexaboride nanowires by low pressure chemical vapor deposition
    Jash, Panchatapa
    Trenary, Michael
    16TH INTERNATIONAL SYMPOSIUM ON BORON, BORIDES AND RELATED MATERIALS (ISBB 2008), 2009, 176
  • [7] Characterization of graphene grown on copper foil by chemical vapor deposition (CVD) at ambient pressure conditions
    Cazzanelli, Enzo
    De Luca, Oreste
    Vuono, Danilo
    Policicchio, Alfonso
    Castriota, Marco
    Desiderio, Giovanni
    De Santo, Maria Penelope
    Aloise, Alfredo
    Fasanella, Angela
    Rugiero, Tania
    Agostino, Raffaele Giuseppe
    JOURNAL OF RAMAN SPECTROSCOPY, 2018, 49 (06) : 1006 - 1014
  • [8] Precise synthesis of graphene by chemical vapor deposition
    Liu, Bing
    Ma, Siguang
    NANOSCALE, 2024, 16 (09) : 4407 - 4433
  • [9] Chemical vapor deposition synthesis of graphene films
    Qing, Fangzhu
    Hou, Yuting
    Stehle, Richard
    Li, Xuesong
    APL MATERIALS, 2019, 7 (02):
  • [10] Template-free synthesis of fully collapsed carbon nanotubes and graphene nanoribbons by chemical vapor deposition
    Zhang, Yong-Xing
    Jia, Yong
    APPLIED SURFACE SCIENCE, 2015, 357 : 1205 - 1211