Controlled catalyst-transfer polymerization in graphene nanoribbon synthesis

被引:3
作者
Pun, Sai Ho [1 ]
Delgado, Aidan [1 ]
Dadich, Christina [1 ]
Cronin, Adam [1 ]
Fischer, Felix Raoul [1 ,2 ,3 ,4 ]
机构
[1] Univ Calif Berkeley, Dept Chem, Berkeley, CA 94720 USA
[2] Lawrence Berkeley Natl Lab, Mat Sci Div, Berkeley, CA 94720 USA
[3] Univ Calif Berkeley, Kavli Energy Nanosci Inst, Berkeley, CA 94720 USA
[4] Univ Calif Berkeley, Bakar Inst Digital Mat Planet, Div Comp Data Sci & Soc, Berkeley, CA 94720 USA
来源
CHEM | 2024年 / 10卷 / 02期
基金
美国国家科学基金会;
关键词
CROSS-COUPLING POLYMERIZATION; AB-TYPE MONOMERS; ON-SURFACE SYNTHESIS; BOTTOM-UP SYNTHESIS; CONJUGATED POLYMERS; PRECISION SYNTHESIS; GROWTH;
D O I
10.1016/j.chempr.2023.11.002
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Exercising direct control over the unusual electronic structures arising from quantum confinement effects in graphene nanoribbons (GNRs) is intimately linked to geometric boundary conditions imposed by the structure of the ribbon. Besides composition and position of substitutional dopant atoms, the symmetry of the unit cell, width, length, and termination of a GNR govern its electronic structure. Here, we present a rational design that integrates each of these interdependent variables within a modular bottom -up synthesis. Our hybrid chemical approach relies on a catalyst -transfer polymerization that establishes excellent control over length, width, and end groups. Complemented by a surface -assisted cyclodehydrogenation step, uniquely enabled by matrix -assisted direct (MAD) transfer protocols, geometry and functional handles encoded in a polymer template are faithfully mapped onto the structure of the corresponding GNR. Bond -resolved scanning tunneling microscopy (BRSTM) and spectroscopy (STS) validate the robust correlation between polymer template design and GNR electronic structure.
引用
收藏
页码:675 / 685
页数:12
相关论文
共 50 条
  • [31] Hierarchical On-Surface Synthesis of Graphene Nanoribbon Heterojunctions
    Bronner, Christopher
    Durr, Rebecca A.
    Rizzo, Daniel J.
    Lee, Yea-Lee
    Marangoni, Tomas
    Kalayjian, Alin Miksi
    Rodriguez, Henry
    Zhao, William
    Louie, Steven G.
    Fischer, Felix R.
    Crommie, Michael F.
    ACS NANO, 2018, 12 (03) : 2193 - 2200
  • [32] Synthesis of Regioisomeric Graphene Nanoribbon Junctions via Heteroprecursors
    Sun, Kewei
    Krejci, Ondrej
    Foster, Adam S.
    Okuda, Yasuhiro
    Orita, Akihiro
    Kawai, Shigeki
    JOURNAL OF PHYSICAL CHEMISTRY C, 2019, 123 (28) : 17632 - 17638
  • [33] Impact of Preferential π-Binding in Catalyst-Transfer Polycondensation of Thiazole Derivatives
    Smith, Mitchell L.
    Leone, Amanda K.
    Zimmerman, Paul M.
    McNeil, Anne J.
    ACS MACRO LETTERS, 2016, 5 (12): : 1411 - 1415
  • [34] RETRACTED: Living annulative π-extension polymerization for graphene nanoribbon synthesis (Retracted article. See vol. 588, pg. 180, 2020)
    Yano, Yuuta
    Mitoma, Nobuhiko
    Matsushima, Kaho
    Wang, Feijiu
    Matsui, Keisuke
    Takakura, Akira
    Miyauchi, Yuhei
    Ito, Hideto
    Itami, Kenichiro
    NATURE, 2019, 571 (7765) : 387 - +
  • [35] Recent progress on end-group chemistry of conjugated polymers based on Suzuki-Miyaura catalyst-transfer polymerization
    Yang, Hee-Seong
    Choi, Hae-Nam
    Lee, In-Hwan
    GIANT, 2023, 14
  • [36] Precision Graphene Nanoribbon Heterojunctions by Chain-Growth Polymerization
    Zhang, Jin-Jiang
    Liu, Kun
    Xiao, Yao
    Yu, Xiuling
    Huang, Li
    Gao, Hong-Jun
    Ma, Ji
    Feng, Xinliang
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2023, 62 (41)
  • [37] Impact of Precatalyst Activation on Suzuki-Miyaura Catalyst-Transfer Polymerizations: New Mechanistic Scenarios for Pre-transmetalation Events
    Grisorio, Roberto
    Suranna, Gian Paolo
    ACS MACRO LETTERS, 2017, 6 (11): : 1251 - 1256
  • [38] Synthesis of an azulene-containing graphene nanoribbon
    Mathey, Pierre
    Sobczak, Quentin
    Darvish, Ali
    Morin, Jean-Francois
    CHEMICAL COMMUNICATIONS, 2024, 60 (36) : 4854 - 4857
  • [39] Controlled Synthesis of Polyfluorenes via Kumada Catalyst Transfer Polycondensation with Ni(acac)2/dppp as the Catalyst
    Sui, Aiguo
    Shi, Xincui
    Wu, Shupeng
    Tian, Hongkun
    Geng, Yanhou
    Wang, Fosong
    MACROMOLECULES, 2012, 45 (13) : 5436 - 5443
  • [40] Suzuki-Miyaura Catalyst-Transfer Condensation Polymerization for the Synthesis of Polyphenylene with Ester Side Chain by Using Stable, Reactive 1,1,2,2-Tetraethylethylene Glycol Boronate (B(Epin)) Monomer
    Nitto, Reo
    Ohta, Yoshihiro
    Yokozawa, Tsutomu
    MACROMOLECULES, 2024, 57 (03) : 985 - 990