Studies about the exfoliation of layered hexaniobate (2005)
- Authors:
- Autor USP: CONSTANTINO, VERA REGINA LEOPOLDO - IQ
- Unidade: IQ
- Subjects: DIFRAÇÃO POR RAIOS X; MICROSCOPIA ELETRÔNICA
- Language: Inglês
- Imprenta:
- Publisher: European Materials Research Society
- Publisher place: Strasbourg
- Date published: 2005
- Source:
- Título do periódico: Abstracts
- Conference titles: Spring Meeting of the European Materials Research Society - E-MRS
-
ABNT
SHIGUIHARA, Ana Lucia e BIZETO, Marcos Augusto e CONSTANTINO, Vera Regina Leopoldo. Studies about the exfoliation of layered hexaniobate. 2005, Anais.. Strasbourg: European Materials Research Society, 2005. . Acesso em: 26 abr. 2024. -
APA
Shiguihara, A. L., Bizeto, M. A., & Constantino, V. R. L. (2005). Studies about the exfoliation of layered hexaniobate. In Abstracts. Strasbourg: European Materials Research Society. -
NLM
Shiguihara AL, Bizeto MA, Constantino VRL. Studies about the exfoliation of layered hexaniobate. Abstracts. 2005 ;[citado 2024 abr. 26 ] -
Vancouver
Shiguihara AL, Bizeto MA, Constantino VRL. Studies about the exfoliation of layered hexaniobate. Abstracts. 2005 ;[citado 2024 abr. 26 ] - Synthesis and catalytic properties of silicate -intercalated layered double hydroxides formed by intragallery hydrolysis of tetraethylorthosilicate
- Structure-reactivity relationships for basic catalysts derived from a 'MG POT.2+' / 'AL POT.3+' / 'CO POT.2- IND.3' layered double hydroxide
- 'AL IND. 2''O IND. 3' pillared 'H IND. 2''K IND. 2''NB IND. 6''O IND. 17' synthesized from aqueous dispersions containing exfoliated layers
- Exploring the preparation of colloidal dispersions of exfoliated layered niobates aiming the synthesis of new composite materials
- Studies on the exfoliation process of a layered niobate
- Caracterização espectroscópica da polimerização da anilina confinada em argila pilarizada
- New synthetic route to Nb2O5 mesostructures
- Structural aspects and thermal behavior of the proton-exchanged layered niobate K4Nb6O17
- Layered double hydroxides are promising nanomaterials for tissue bioengineering application
- Adsorption of gallic acid on nanoclay modified with poly(diallyldimethylammonium chloride)
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