A high-pressure scanning tunneling microscope
- 1 September 2001
- journal article
- Published by AIP Publishing in Review of Scientific Instruments
- Vol. 72 (9), 3537-3542
- https://doi.org/10.1063/1.1389497
Abstract
We present the design and performance of a high-pressurescanning tunneling microscope (HP–STM), which allows atom-resolved imaging of metal surfaces at pressures ranging from ultrahigh vacuum (UHV) to atmospheric pressures (1×10 −10 –1000 mbar) on a routine basis. The HP–STM is integrated in a gold-plated high-pressure cell with a volume of only ∼0.5 l, which is attached directly to an UHV preparation/analysis chamber. The latter facilitates quick sample transfer between the UHV chamber and the high-pressure cell, and allows for in situ chemical and structural analysis by a number of analytical UHV techniques incorporated in the UHV chamber. Reactant gases are admitted to the high-pressure cell via a dedicated gas handling system, which includes several stages of gas purification. The use of ultrapure gasses is essential when working at high pressures in order to achieve well-defined experimental conditions. The latter is demonstrated in the case of H/Cu(110) at atmospheric H 2 pressures where impurity-related structures were observed.Keywords
This publication has 18 references indexed in Scilit:
- Bridging the Pressure Gap in Surface Science at the Atomic Level:Physical Review Letters, 2001
- High pressure, high temperature scanning tunneling microscopyJournal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures, 1999
- A Microkinetic Analysis of the Water–Gas Shift Reaction under Industrial ConditionsJournal of Catalysis, 1996
- Mesoscopic structural transformations of the Au(111) surface induced by alkali metal adsorptionSurface Science, 1994
- Methanol synthesis on Cu(100) from a binary gas mixture of CO2 and H2Catalysis Letters, 1994
- The dissociative adsorption of H2 and D2 on Cu(110): activation barriers and dynamicsSurface Science, 1991
- Visualization of the dynamics in surface reconstructionsJournal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures, 1991
- Scanning tunneling microscopy observations on the reconstructed Au(111) surface: Atomic structure, long-range superstructure, rotational domains, and surface defectsPhysical Review B, 1990
- Adsorption and desorption kinetics in the systems H2/Cu(111), H2/Cu(110) and H2/Cu(100)Surface Science, 1989
- A fully automated, ‘thimble‐size’ scanning tunnelling microscopeJournal of Microscopy, 1988