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奇数还是偶数?单层畴尺寸取决于二炔在烷二炔基蒽中的位置。

Odd or even? Monolayer domain size depends on diyne position in alkadiynylanthracenes.

机构信息

Department of Chemistry, Brown University , Providence, Rhode Island 02912, United States.

出版信息

J Phys Chem B. 2013 Dec 12;117(49):15856-65. doi: 10.1021/jp4084376. Epub 2013 Oct 9.

Abstract

1,5-(Alkadiynyl)anthracenes self-assemble single component and multicomponent monolayers at the solution-HOPG interface. An alkadiynyl chain's kinked shape constrains the molecular structures with which it can close-pack. This affords rudimentary molecular recognition that has been used to direct self-assembly of 1-D patterned, multicomponent monolayers. The unit cell building blocks of single- and multicomponent alkadiynylanthracene monolayers repeat with high fidelity for 100s of nanometers along the side chain direction. Unit cell repeat fidelity along the orthogonal, anthracene column direction of the monolayer depends on diyne location within the side chain; even-position diyne side chains produce high fidelity of unit cell repeats and wider domain widths along the anthracene columns, whereas odd-position diyne side chains produce more frequent domain interfaces that disrupt the anthracene columns. Alkadiynylanthracene monolayers may be viewed as stacks of 1-D molecular tapes. 1-D tape molecular composition, sequence, and intratape side chain alignment are dictated by shape complementarity of the kinked alkadiynyl side chains. Stacking alignments of adjacent 1-D tapes are controlled by shape matching of tape peripheries and determine repeat fidelity along the anthracene columns. Tapes stacked with a constant intertape alignment comprise crystalline domains that repeat along the anthracene columns. The 1-D tapes formed by anthracenes with odd-position diynes have triangle wave peripheries that close-pack in multiple stacking alignments. This reduces unit cell repeat fidelity and decreases the widths of crystalline domains along the anthracene columns. Even-position diyne side chains form 1-D tapes with trapezoid wave peripheries that close-pack in only one stacking alignment. This generates higher stacking fidelity, larger domain widths, and fewer domain interfaces along the anthracene columns of even-position diyne monolayers. Even- and odd-position diyne monolayers exhibit comparable densities of interfaces between enantiotopic domains and between domains aligned along different graphite symmetry axes. These interfaces likely arise through collisions of independently nucleated/growing domains and persist for lack of kinetically competent pathways that interconvert or merge the domains.

摘要

1,5-(丙二炔基)蒽在溶液-HOPG 界面自组装为单组分和多组分单层。丙二炔链的扭曲形状限制了与之紧密堆积的分子结构。这提供了基本的分子识别,已被用于指导 1-D 图案化、多组分单层的自组装。单组分和多组分丙二炔蒽单层的单元胞构建块在侧链方向上以高保真度重复 100 多个纳米。单层中沿正交蒽柱方向的单元胞重复保真度取决于侧链中二炔的位置;偶数位二炔侧链产生单元胞重复的高保真度和沿蒽柱的更宽的畴宽度,而奇数位二炔侧链产生更频繁的畴界面,破坏蒽柱。丙二炔蒽单层可以看作是一维分子带的堆叠。1-D 带分子组成、序列和带内侧链排列由扭曲的丙二炔侧链的形状互补性决定。相邻 1-D 带的堆叠排列由带边缘的形状匹配控制,并决定沿蒽柱的重复保真度。由具有相同位置二炔的蒽形成的带以恒定的带间排列堆叠,包含沿蒽柱重复的结晶畴。具有奇数位二炔的蒽形成的 1-D 带具有三角形波边缘,可在多种堆叠排列中紧密堆积。这降低了单元胞重复保真度,并减小了沿蒽柱的结晶畴的宽度。偶数位二炔侧链形成具有梯形波边缘的 1-D 带,仅在一种堆叠排列中紧密堆积。这产生了更高的堆叠保真度、更大的畴宽度和沿偶数位二炔单层蒽柱的更少的畴界面。偶数位和奇数位二炔单层在对映体畴之间和沿不同石墨对称轴对齐的畴之间表现出可比的界面密度。这些界面可能是通过独立成核/生长的畴的碰撞产生的,并且由于缺乏能够相互转换或合并畴的动力学上可行的途径而持续存在。

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