2013
DOI: 10.1002/andp.201300068
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ESTEM imaging of single atoms under controlled temperature and gas environment conditions in catalyst reaction studies

Abstract: Heterogeneous gas‐solid catalyst reactions occur on the atomic scale and there is increasing evidence single atoms and very small clusters can act as primary active sites in chemical reactions. Aberration corrected environmental scanning transmission electron microscope (AC ESTEM) has been developed for novel studies of nanoparticle catalysts with Angstrom (0.1 nm) resolution in gas. It extends high vacuum analyses with full analytical facilities and unrestricted high angle annular dark field (HAADF) imaging o… Show more

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Cited by 69 publications
(173 citation statements)
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References 28 publications
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“…Figure 2 18 shows single atoms and clusters of Pt on a carbon support with a corresponding HAADF AC ESTEM image intensity profile of a single atom recorded at 25°C. The very thin (1-2 atoms high), raft-like clusters are made up primarily of partially ordered {111} spacings with a general (110) texture.…”
Section: Ac Estem Of Pt and Au Na Nocata Lystsmentioning
confidence: 99%
See 1 more Smart Citation
“…Figure 2 18 shows single atoms and clusters of Pt on a carbon support with a corresponding HAADF AC ESTEM image intensity profile of a single atom recorded at 25°C. The very thin (1-2 atoms high), raft-like clusters are made up primarily of partially ordered {111} spacings with a general (110) texture.…”
Section: Ac Estem Of Pt and Au Na Nocata Lystsmentioning
confidence: 99%
“…19 With the ESTEM, the complete population of single atoms has been identified and migratory single atoms on the support between the more substantial clusters have been imaged for the first time by the authors under controlled gas and temperature environments. 18 This observation of reacting single atoms is important in understanding the mechanisms of catalytic reactions and deactivation processes.…”
Section: Ac Estem Of Pt and Au Na Nocata Lystsmentioning
confidence: 99%
“…This insight has been aided by advances in analytical methodologies, notably the development of in situ or operando (under working conditions) spectroscopic [52][53][54] /microscopic [55][56][57][58] tools able to provide quantitative, spatio-temporal information on structurefunction relations of solid catalysts in the liquid and vapour phase. Parallel improvements in inorganic synthetic protocols offer finer control over preparative methods to direct the nanostructure (composition, morphology, size, valence and support architecture) of palladium catalysts [59][60][61] and thereby enhance activity, selectivity and lifetime in an informed manner.…”
Section: Introductionmentioning
confidence: 99%
“…A combined ESTEM and ETEM system with both probe and image correctors has been built in-house at York on a JEOL 2200 FS platform, with full performance of the core retained uncompromised and in parts enhanced. Full HAADF STEM Z-contrast imaging with single atom resolution and sensitivity is enabled, as is high quality EDX analysis (now enhanced rather than diminished by additional column apertures), and introduces key new mapping functionalities [6]. Even with our early (2006) platform system at York, we have sub-Angstrom (<0.1nm) imaging in both ETEM and ESTEM modes.…”
mentioning
confidence: 99%
“…Even with our early (2006) platform system at York, we have sub-Angstrom (<0.1nm) imaging in both ETEM and ESTEM modes. Furnace holder electronics must be improved for ESTEM resolution [6] but the introduction of high stability MEMS hot stages (here by DENS Solutions) have greatly improved diverse applications. Short mark (exposure) to long space (beam blanked) ratios can now be used to analyse and limit e-beam effects which could otherwise lead to chemical artefact sampling.…”
mentioning
confidence: 99%