Development of first ever scanning probe microscopy capabilities for plutonium

Scanning probe microscopy capabilities have been developed for plutonium and its derivative compounds. Specifically, a scanning tunneling microscope and an atomic force microscope housed in an ultra-high vacuum system and an inert atmosphere glove box, respectively, were prepared for the introductio...

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Published inJournal of nuclear materials Vol. 486; p. 260
Main Authors Beaux, Miles F, Cordoba, Miguel Santiago, Zocco, Adam T, Vodnik, Douglas R, Ramos, Michael, Richmond, Scott, Moore, David P, Venhaus, Thomas J, Joyce, Stephen A, Usov, Igor O
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier BV 01.04.2017
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Abstract Scanning probe microscopy capabilities have been developed for plutonium and its derivative compounds. Specifically, a scanning tunneling microscope and an atomic force microscope housed in an ultra-high vacuum system and an inert atmosphere glove box, respectively, were prepared for the introduction of small non-dispersible δ-Pu coupons. Experimental details, procedures, and preliminary imaging of δ-Pu coupons are presented to demonstrate the functionality of these new capabilities. These first of a kind capabilities for plutonium represent a significant step forward in the ability to characterize and understand plutonium surfaces with high spatial resolution.
AbstractList Scanning probe microscopy capabilities have been developed for plutonium and its derivative compounds. Specifically, a scanning tunneling microscope and an atomic force microscope housed in an ultra-high vacuum system and an inert atmosphere glove box, respectively, were prepared for the introduction of small non-dispersible δ-Pu coupons. Experimental details, procedures, and preliminary imaging of δ-Pu coupons are presented to demonstrate the functionality of these new capabilities. These first of a kind capabilities for plutonium represent a significant step forward in the ability to characterize and understand plutonium surfaces with high spatial resolution.
Author Zocco, Adam T
Vodnik, Douglas R
Ramos, Michael
Moore, David P
Cordoba, Miguel Santiago
Beaux, Miles F
Venhaus, Thomas J
Joyce, Stephen A
Richmond, Scott
Usov, Igor O
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Snippet Scanning probe microscopy capabilities have been developed for plutonium and its derivative compounds. Specifically, a scanning tunneling microscope and an...
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StartPage 260
SubjectTerms Atomic force microscopy
High vacuum
Plutonium
Scanning electron microscopy
Scanning probe microscopy
Spatial discrimination
Spatial resolution
Tunneling
Vacuum
Title Development of first ever scanning probe microscopy capabilities for plutonium
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