首页> 外文期刊>ACS applied materials & interfaces >Multimicrometer Noncovalent Monolayer Domains on Layered Materials through Thermally Controlled Langmuir-Schaefer Conversion for Noncovalent 2D Functionalization
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Multimicrometer Noncovalent Monolayer Domains on Layered Materials through Thermally Controlled Langmuir-Schaefer Conversion for Noncovalent 2D Functionalization

机译:通过热控制的Langmuir-Schaefer转化为非共价2D官能化的多元计非共价单层结构域

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摘要

As functionalized 2D materials are incorporated into hybrid materials, ensuring large-area structural control in noncovalently adsorbed films becomes increasingly important. Noncovalent functionalization avoids disrupting electronic structure in 2D materials; however, relatively weak molecular interactions in such monolayers typically reduce stability toward solution processing and other common material handling conditions. Here; we find that controlling substrate temperature during Langmuir-Schaefer conversion of a standing phase monolayer of diynoic amphiphiles on water a horizontally defiled monolayer on a 2D substrate routinely produces multimicrometer domains, atleast an order of magnitude larger than those typically achieved through drop-casting. Following polymerization, these highly ordered monolayers retain their structures during vigorous washing with solvents including water, ethanol, tetrahydrofuran, and toluene. These findings point to a convenient and broadly applicable strategy for noncovalent functionalization of 2D materials in applications that require large-area structural control, for instance, to minimize desorption at defects during subsequent solution processing.
机译:作为官能化的2D材料掺入混合材料中,确保在非共价吸附的薄膜中的大面积结构控制变得越来越重要。非共价官能化避免在2D材料中扰乱电子结构;然而,这种单层的相对较弱的分子相互作用通常会降低溶液处理和其他常见物质处理条件的稳定性。这里;我们发现,在2D衬底上的水平透明的单层在水中探测旁相单层的Langmuir-Schaefer转换期间控制衬底温度常规地产生多重计域,至少比通常通过滴浇铸所实现的数量级。聚合后,这些高度有序的单层在剧烈洗涤中保留其结构,其溶剂包括水,乙醇,四氢呋喃和甲苯。这些发现指出了在需要大面积结构控制的应用中的2D材料的非共价官能化的方便和广泛适用的策略,例如,在随后的解决方案处理期间最小化缺陷的解吸。

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