scholarly journals Probing catalytic surfaces by correlative scanning photoemission electron microscopy and atom probe tomography

2020 ◽  
Vol 8 (1) ◽  
pp. 388-400
Author(s):  
Kevin Schweinar ◽  
Rachel L. Nicholls ◽  
Catherine R. Rajamathi ◽  
Patrick Zeller ◽  
Matteo Amati ◽  
...  

Elucidating the atomic structure and chemistry of catalysts by correlative scanning photoemission electron microscopy and atom probe tomography.

Author(s):  
G. F. Rempfer

In photoelectron microscopy (PEM), also called photoemission electron microscopy (PEEM), the image is formed by electrons which have been liberated from the specimen by ultraviolet light. The electrons are accelerated by an electric field before being imaged by an electron lens system. The specimen is supported on a planar electrode (or the electrode itself may be the specimen), and the accelerating field is applied between the specimen, which serves as the cathode, and an anode. The accelerating field is essentially uniform except for microfields near the surface of the specimen and a diverging field near the anode aperture. The uniform field forms a virtual image of the specimen (virtual specimen) at unit lateral magnification, approximately twice as far from the anode as is the specimen. The diverging field at the anode aperture in turn forms a virtual image of the virtual specimen at magnification 2/3, at a distance from the anode of 4/3 the specimen distance. This demagnified virtual image is the object for the objective stage of the lens system.


2017 ◽  
Vol 23 (S1) ◽  
pp. 1504-1505
Author(s):  
Taisuke Ohta ◽  
Morgann Berg ◽  
Kunttal Keyshar ◽  
Jason M. Kephart ◽  
Thomas E. Beechem ◽  
...  

Nano Letters ◽  
2017 ◽  
Vol 17 (2) ◽  
pp. 1034-1041 ◽  
Author(s):  
Hongxuan Guo ◽  
Evgheni Strelcov ◽  
Alexander Yulaev ◽  
Jian Wang ◽  
Narayana Appathurai ◽  
...  

2019 ◽  
Vol 55 (6) ◽  
pp. 1382-1403 ◽  
Author(s):  
Josiah B. Lewis ◽  
Christine Floss ◽  
Dieter Isheim ◽  
Tyrone L. Daulton ◽  
David N. Seidman ◽  
...  

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