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Title: Demonstration of Thin Film Pair Distribution Function Analysis (tfPDF) for the Study of Local Structure in Amorphous and Crystalline Thin Films

Journal Article · · IUCrJ

Research Organization:
Brookhaven National Laboratory (BNL), Upton, NY (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES)
DOE Contract Number:
SC00112704
OSTI ID:
1229009
Report Number(s):
BNL-111084-2015-JA
Journal Information:
IUCrJ, Vol. 2; ISSN 2052-2525
Publisher:
International Union of Crystallography
Country of Publication:
United States
Language:
English

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Volume-wise destruction of the antiferromagnetic Mott insulating state through quantum tuning journal August 2016
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Lithium ion conductivity in Li 2 S–P 2 S 5 glasses – building units and local structure evolution during the crystallization of superionic conductors Li 3 PS 4 , Li 7 P 3 S 11 and Li 4 P 2 S 7 journal January 2017
The rise of the X-ray atomic pair distribution function method: a series of fortunate events journal April 2019
Microfluidic electrochemical cell for in situ structural characterization of amorphous thin-film catalysts using high-energy X-ray scattering journal August 2019
Local atomic structure of thin and ultrathin films via rapid high-energy X-ray total scattering at grazing incidence journal February 2019
Time-resolved grazing-incidence pair distribution functions during deposition by radio-frequency magnetron sputtering text January 2019
Volume-wise destruction of the antiferromagnetic Mott insulating state through quantum tuning text January 2016
Time-resolved grazing-incidence pair distribution functions during deposition by radio-frequency magnetron sputtering text January 2019
Local atomic structure of thin and ultrathin films via rapid high-energy X-ray total scattering at grazing incidence text January 2019
Time-resolved grazing-incidence pair distribution functions during deposition by radio-frequency magnetron sputtering journal February 2019
Volume-wise destruction of the antiferromagnetic Mott insulating state through quantum tuning text January 2016