Utilize este identificador para referenciar este registo: http://hdl.handle.net/10773/19974
Título: Bioferroelectricity in Nanostructured Glycine and Thymine: Molecular Modeling and Ferroelectric Properties at the Nanoscale
Autor: Bystrov, V. S.
Seyedhosseini, E.
Bdikin, I.
Kopyl, S.
Neumayer, S. M.
Coutinho, J.
Kholkin, A. L.
Palavras-chave: SCANNING PROBE MICROSCOPY
CRYSTAL-STRUCTURE
GAMMA-GLYCINE
PIEZOELECTRIC PROPERTIES
SEMIEMPIRICAL METHODS
THERMODYNAMIC ASPECTS
NEUTRON-DIFFRACTION
BETA-GLYCINE
POLYMORPHISM
PROTEIN
Data: 2015
Editora: TAYLOR & FRANCIS LTD
Resumo: Nanostructured aminoacid glycine and nucleobase thymine are very important for various biomedical applications. Experimentally, these structures demonstrate piezoelectric and polar properties. But the value of polarization and its switching behavior are not clear yet. In this work, computational modeling of glycine polymorphic phases (alpha and beta) and thymine nanostructures was performed using a combined method with LDA first principle calculations of atomic optimized crystal structures in AIMPRO code on Linux cluster combined with molecular semi-empirical PM3 calculations by HyperChem 8.0. The developed molecular model and calculated parameters are compared with recent measurements using piezoresponse force microscopy (PFM) at the nanoscale.
Peer review: yes
URI: http://hdl.handle.net/10773/19974
DOI: 10.1080/00150193.2015.995574
ISSN: 0015-0193
Versão do Editor: 10.1080/00150193.2015.995574
Aparece nas coleções: CICECO - Artigos



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