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利用离子软着陆从孤立离子制备多层功能材料。

From Isolated Ions to Multilayer Functional Materials Using Ion Soft Landing.

作者信息

Laskin Julia, Johnson Grant E, Warneke Jonas, Prabhakaran Venkateshkumar

机构信息

Department of Chemistry, Purdue University, West Lafayette, IN, 47907, USA.

Physical Sciences Division, Pacific Northwest National Laboratory, Richland, WA, 99352, USA.

出版信息

Angew Chem Int Ed Engl. 2018 Dec 10;57(50):16270-16284. doi: 10.1002/anie.201712296. Epub 2018 Nov 8.

Abstract

The ability to deposit intact polyatomic ions with well-defined composition, charge state, and kinetic energy onto surfaces makes preparative mass spectrometry, also called ion soft landing, particularly attractive for preparing uniform molecular and ionic layers. Early studies characterized the structures, charge states, and reactivity of sparsely distributed soft-landed species. The recent development of high-flux ionization sources has opened up new opportunities for the precisely controlled preparation of both two-dimensional structures and three-dimensional multilayer architectures by ion soft landing. The deposition of large numbers of ions onto supports led to previously unknown phenomena being uncovered, thereby opening several exciting research directions. Furthermore, faster ion deposition has enabled fabrication of novel functional devices. This Review discusses important phenomena and highlights key developments pertaining to the preparation of well-defined interfaces for studies in energy storage, catalysis, soft materials, and biology.

摘要

将具有明确组成、电荷状态和动能的完整多原子离子沉积到表面的能力,使得制备质谱法(也称为离子软着陆)在制备均匀的分子和离子层方面极具吸引力。早期研究对稀疏分布的软着陆物种的结构、电荷状态和反应性进行了表征。高通量电离源的最新发展为通过离子软着陆精确控制制备二维结构和三维多层结构开辟了新机会。大量离子沉积到载体上导致发现了以前未知的现象,从而开辟了几个令人兴奋的研究方向。此外,更快的离子沉积能够制造新型功能器件。本综述讨论了重要现象,并突出了与制备用于能量存储、催化、软材料和生物学研究的明确界面相关的关键进展。

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