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首页> 外文期刊>ACS nano >Dissolution of Sodium Halides by Confined Water on Au(111) via Langmuir-Hinshelwood Process
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Dissolution of Sodium Halides by Confined Water on Au(111) via Langmuir-Hinshelwood Process

机译:通过Langmuir-Hinshelwood工艺对Au(111)的限制水溶解卤化钠

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摘要

Salt dissolution is generally encountered in widespread phenomena in nature. As a typical case, the dissolution of NaCl has been widely investigated in aqueous environment, while the process and mechanism of the on-surface dissolution may differ from that in solution and remain to be explored. Herein, we model a NaCl dissolution process on the Au(111) surface with confined water at room temperature (RT) and above. With the assistance of adenine molecules as water reservoir and carrier, the dissolution of NaCl is achieved above RT via the Langmuir-Hinshelwood mechanism rather than the Eley-Rideal one, along with the selective formation of stable Cl- hydrates, which desorb from the surface in the next step. To explore the generality, such a strategy has been extended to other sodium halide systems (e.g., NaBr and NaI), and expectedly, the dissolution of sodium halides is also achieved by forming stable Br- and I- hydrates via the Langmuir-Hinshelwood process.
机译:通常遇到盐溶解本质上是广泛的现象。 作为典型的情况,NaCl的溶解已被广泛研究在水性环境中,而表面溶解的过程和机理可能与溶液中的溶解情况不同,并且仍然待探索。 在此,我们在室温(RT)和上述局限性水中,在Au(111)表面上模拟Au(111)表面上的NaCl溶解过程。 随着腺嘌呤分子作为水储存器和载体的辅助,NaCl的溶解通过Langmuir-Hinshelwood机制而不是Eley-TiNeal One以上的溶解,以及稳定的Cl-水合物的选择性形成,该稳定的Cl-水合物从表面中解吸 在下一步。 为了探索一般性,这种策略已经扩展到其他卤化钠系统(例如,NaBr和NaI),并且预期的是,通过通过Langmuir-Hinshelwood工艺形成稳定的BR-和I-水合物,还可以实现卤化钠的溶解 。

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