...
首页> 外文期刊>Advanced Functional Materials >Out-Of-Plane Metal Coordination for a True Solvent-Free Building with Molecular Bricks: Dodging the Surface Ligand Effect for On-Surface Vacuum Self-Assembly
【24h】

Out-Of-Plane Metal Coordination for a True Solvent-Free Building with Molecular Bricks: Dodging the Surface Ligand Effect for On-Surface Vacuum Self-Assembly

机译:具有分子砖的真正无溶剂建筑物的外平面金属协调:躲避表面配体对表面真空自组装的影响

获取原文
获取原文并翻译 | 示例

摘要

The desirable self-assembly (SA) of repeated 2D stacked layers requires a "holistic analysis" of three interconnected components: the electrode, the interface, and the molecular component; among them, the contact interface bears the largest burden responsibilities. Epitaxial growth (EG) of coherent 2D+n stacked heterojunction by solvent-free deposition holds great promise, although the feasibility has never been demonstrated given multiple drawbacks (e.g., surface-ligand effect, SLE). Here, it is demonstrated how a coherent 2D+n (n = 3) layered heterorganic film is grown on an archetypal Fe metal electrode. The groundbreaking achievement is the result of the in-vacuum integration of: i) chemical decoupling of the basal organic layer (a Zn-II-tetraphenylporphyrine, ZnTPP) from the metal electrode, ii) 2D-ordering of the ZnTPP commensurate to the substrate, iii) rigid, stoichiometric, and orthogonally arranged, the molecule-to-molecule coupling between ZnTPP and a ditopic linear bridging ligand (i.e., DPNDI) guided by SA coordination chemistry, and iv) sharp (chemical) termination of the layered film.
机译:重复的2D堆叠层的理想自组装(SA)需要三个互连组分的“整体分析”:电极,界面和分子量;其中,联系人界面具有最大的负担责任。通过无溶剂沉积的连贯的2d + n堆叠异质结的外延生长具有很大的希望,尽管从未证明过多个缺点(例如,表面 - 配体效果,SLE)。这里,证明了如何在原型Fe金属电极上生长相干的2d + n(n = 3)层状杂膜。开创性成就是真空积分的结果:i)基础有机层(Zn-II-四苯基,ZnTPP)的化学解耦,来自金属电极,II)ZnTPP与基材相称的ZnTPP的2D订购,III)刚性,化学计量和正交排列,ZnTPP与由SA配位化学引导的多透视线性桥接配体(即,DPNDI)之间的分子与分子偶联,和IV)尖锐(化学)终止的层状膜。

著录项

  • 来源
    《Advanced Functional Materials 》 |2021年第20期| 20T1008.1-20T1008.7| 共7页
  • 作者单位

    Consiglio Nazl Ric CNR SCITEC Ist Sci & Tecnol Chim G Natta Via Golgi 19 I-20133 Milan Italy|PST Via G Fantoli 16-15 I-20138 Milan Italy|SmartMatLab Ctr Via Golgi 19 I-20133 Milan Italy|Univ Pavia Dipartimento Chim Via Taramelli 12 I-27100 Pavia Italy;

    Politecn Milan Dept Phys Pza Leonardo da Vinci 32 I-20133 Milan Italy;

    Consiglio Nazl Ric CNR SCITEC Ist Sci & Tecnol Chim G Natta Via Golgi 19 I-20133 Milan Italy|PST Via G Fantoli 16-15 I-20138 Milan Italy|SmartMatLab Ctr Via Golgi 19 I-20133 Milan Italy;

    Politecn Milan Dept Phys Pza Leonardo da Vinci 32 I-20133 Milan Italy|Univ Roma La Sapienza Dept Phys Pza A Moro 5 I-00185 Rome Italy;

    Politecn Milan Dept Phys Pza Leonardo da Vinci 32 I-20133 Milan Italy;

    Politecn Milan Dept Phys Pza Leonardo da Vinci 32 I-20133 Milan Italy;

    Politecn Milan Dept Phys Pza Leonardo da Vinci 32 I-20133 Milan Italy;

    Elettra Sincrotrone Trieste Ss 14 Km 163-5 Area Sci Pk I-34149 Trieste Italy;

    CNR Ist Officina Mat Lab TASC IOM Ss 14 Km 163-5 I-34149 Trieste Italy;

    CNR Ist Officina Mat Lab TASC IOM Ss 14 Km 163-5 I-34149 Trieste Italy;

    CNR Ist Officina Mat Lab TASC IOM Ss 14 Km 163-5 I-34149 Trieste Italy;

    Consiglio Nazl Ric CNR SCITEC Ist Sci & Tecnol Chim G Natta Via Golgi 19 I-20133 Milan Italy|PST Via G Fantoli 16-15 I-20138 Milan Italy|Politecn Milan Dept Phys Pza Leonardo da Vinci 32 I-20133 Milan Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    epitaxial growths; ideal contact interfaces; in#8208; vacuum 3D self#8208; assembly; NEXAFS; surface ligand effects;

    机译:外延生长;理想的接触界面;在‐真空3D自我‐组装;Nexafs;表面配体效果;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号