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Spectroscopy / Atomic physics / Molecular physics / Nanoelectronics / Nanowire / X-ray photoelectron spectroscopy / Infrared / Chemistry / Science / Physical chemistry


Thermal stability and reduction of iron oxide nanowires at moderate temperatures Annalisa Paolone*1, Marco Angelucci*2, Stefania Panero3,
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City

Weinheim / Roma / /

Company

Zhou L. P. / Chowdari B. V. / Nanoscience Laboratory / Dupont / Xing / Chambers S. A. / KBr / Joyce S. A. / Agilent / Creative Commons / /

Country

Italy / /

Currency

pence / /

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Facility

Lotus laboratory / /

IndustryTerm

pass energy / energy storage / ethanolic solution / metal oxides / iron oxide systems / spectroscopic tools / mixed chemical state / chemical state / chemical reduction / energy range / chemical and thermal stability / beam energy / electronics / conversion tools / high energy-density / transition metal oxide / definite chemical phase / possible gaseous products / energy / high chemical stability / /

OperatingSystem

Fermi / /

Organization

African Union / Cornell / Beilstein-Institut / Roma La Sapienza University / /

Person

Madhavi / Bruno Scrosati / Francesco Mura / Marco Angelucci / Sridhar / V / Aldo Moro / Annalisa Paolone / Jusef Hassoun / Maria Grazia / /

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Position

Editor / correspondent / rt / Corresponding author / /

ProvinceOrState

Fe / Fe3O4 / /

PublishedMedium

the Beilstein Journal / /

Technology

X-ray / spectroscopy / /

URL

http /

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