首页> 外文期刊>Electrochimica Acta >Artificially phase-separated binary self-assembled monolayers composed of 11-amino-1-undecanethiolate and 10-carboxy-1-decanethiolate on Au(111): A comparative study of two preparing methods
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Artificially phase-separated binary self-assembled monolayers composed of 11-amino-1-undecanethiolate and 10-carboxy-1-decanethiolate on Au(111): A comparative study of two preparing methods

机译:人工相分离由11-氨基-1-十一碳硫醇盐和10-羧基-1-癸硫醇盐在Au(111)上组成的二元自组装单层:两种制备方法的比较研究

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摘要

Two methods have been compared for preparing artificially phase-separated two-component SAMs on Au(111) composed of 11-amino-1-undecanethiolates (AUTe) and 10-carboxyl-l-decanethiolates (CDTe), which would form, thermodynamically, a homogeneously mixed binary SAMs. The first method starts with the formation of a phase-separated binary SAM of AUTe and 2-hydroxy-1-ethanethiolate (HETe) as a template of the artificially phase-separated SAM, followed by the selective desorption of HETe domains and succeeding filling of the vacancy with CDTe. The second method utilizes fluoren-9-ylmethyl N-(11-mercaptoundecyl) carbamate (FMUCe) instead of 11-amino-1-undecanethiol in preparing the template. After the filling with CDTe, the 9-fluorenylmethyloxycarbonyl (Fmoc) group is removed to obtain AUTe domains. Both methods yield artificially phase-separated binary SAMs having AUTe domains of tens nanometer across. The molecularly flat SAM surface with nanometer-scale domains of different acid-base and electrostatic properties are thus created. For preparing binary SAMs with a higher degree of phase separation, the second method is a better choice; a more clear-cut phase separation is achieved.
机译:比较了两种在Au(111)上由11-氨基-1-十一碳硫醇盐(AUTe)和10-羧基-1-癸硫醇盐(CDTe)组成的人工相分离两组分SAM的方法,它们会在热力学上形成,均匀混合的二进制SAM。第一种方法始于形成相分离的二元AUTe SAM和2-羟基-1-乙硫醇盐(HETe)作为人工相分离的SAM的模板,然后选择性地解吸HETe域并随后填充CDTe的空缺。第二种方法在制备模板时利用N-9(11-巯基癸基)氨基甲酸酯芴基(FMUCe)代替11-氨基-1-十一烷硫醇。用CDTe填充后,将9-芴基甲氧羰基(Fmoc)基团去除,以获得AUTe域。两种方法都可以人工分离具有数十纳米的AUTe域的相分离二进制SAM。由此产生具有不同酸碱度和静电性质的纳米级域的分子平坦的SAM表面。对于制备具有更高相分离度的二元SAM,第二种方法是更好的选择。实现了更清晰的相分离。

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