Matches in SemOpenAlex for { <https://semopenalex.org/work/W2316481176> ?p ?o ?g. }
- W2316481176 endingPage "4994" @default.
- W2316481176 startingPage "4987" @default.
- W2316481176 abstract "A facile dry-gel conversion process was developed for crystallization of trihydrate-alumina nanoparticles and boehmite AlOOH nanofibers with controllable morphologies from solid powder of amorphous aluminum hydroxide precipitate. By steam treatment at 200 °C, the amorphous dry gel of aluminum hydroxide precipitate was crystallized, and the morphology of resulting nanomaterials was found to be dependent on the ratio of water-to-gel applied. When the water-to-gel ratio was 1:1, nanoparticles of hydrated aluminum oxide with particle size of 80 ± 10 nm were obtained. Increase of the water-to-gel ratio to 2:1 resulted in the formation of nanoribbons of AlOOH with lengths of 1–2 μm and widths of 100 nm, and further increase of the water-to-gel ratio led to the formation of nanorods of boehmite AlOOH with diameters of 20–30 nm and lengths of 200–500 nm. After thermal treatment at 600 °C, the nanostructured hydrated aluminum oxide and boehmite was transformed to γ-Al2O3, and the morphologies were well preserved. The morphology of the nanostructures was analyzed with transmission electron microscopy (TEM) and field emission scanning electronic microscopy (FESEM). The phase transformations were characterized by X-ray diffraction (XRD), differential scanning calorimetry and thermo-gravimetric analysis (DSC-TGA), Fourier transform infrared (FTIR), Raman, and magic angle spinning nuclear magnetic resonance (MAS NMR) spectroscopy." @default.
- W2316481176 created "2016-06-24" @default.
- W2316481176 creator A5001323251 @default.
- W2316481176 creator A5008457124 @default.
- W2316481176 creator A5021133916 @default.
- W2316481176 creator A5049731598 @default.
- W2316481176 creator A5085424621 @default.
- W2316481176 date "2012-09-06" @default.
- W2316481176 modified "2023-09-22" @default.
- W2316481176 title "Morphology Controllable Synthesis of Nanostructured Boehmite and γ-Alumina by Facile Dry Gel Conversion" @default.
- W2316481176 cites W1963938883 @default.
- W2316481176 cites W1965844469 @default.
- W2316481176 cites W1965912589 @default.
- W2316481176 cites W1967284073 @default.
- W2316481176 cites W1977858902 @default.
- W2316481176 cites W1978622662 @default.
- W2316481176 cites W1979757207 @default.
- W2316481176 cites W1981112632 @default.
- W2316481176 cites W1988119157 @default.
- W2316481176 cites W1989427322 @default.
- W2316481176 cites W1989651833 @default.
- W2316481176 cites W1990910353 @default.
- W2316481176 cites W1994478453 @default.
- W2316481176 cites W1997200889 @default.
- W2316481176 cites W2003405745 @default.
- W2316481176 cites W2006396242 @default.
- W2316481176 cites W2016574471 @default.
- W2316481176 cites W2022722221 @default.
- W2316481176 cites W2023609865 @default.
- W2316481176 cites W2024027028 @default.
- W2316481176 cites W2025233021 @default.
- W2316481176 cites W2027406895 @default.
- W2316481176 cites W2031720314 @default.
- W2316481176 cites W2035377915 @default.
- W2316481176 cites W2035642659 @default.
- W2316481176 cites W2035890064 @default.
- W2316481176 cites W2039997481 @default.
- W2316481176 cites W2040463273 @default.
- W2316481176 cites W2042022755 @default.
- W2316481176 cites W2043375436 @default.
- W2316481176 cites W2044096208 @default.
- W2316481176 cites W2045699495 @default.
- W2316481176 cites W2046048426 @default.
- W2316481176 cites W2050083172 @default.
- W2316481176 cites W2050548495 @default.
- W2316481176 cites W2052903412 @default.
- W2316481176 cites W2054612518 @default.
- W2316481176 cites W2058143589 @default.
- W2316481176 cites W2060706084 @default.
- W2316481176 cites W2061161111 @default.
- W2316481176 cites W2064073806 @default.
- W2316481176 cites W2064609839 @default.
- W2316481176 cites W2065573242 @default.
- W2316481176 cites W2074404072 @default.
- W2316481176 cites W2075256148 @default.
- W2316481176 cites W2078539854 @default.
- W2316481176 cites W2080167589 @default.
- W2316481176 cites W2080610851 @default.
- W2316481176 cites W2081665944 @default.
- W2316481176 cites W2081779515 @default.
- W2316481176 cites W2082663021 @default.
- W2316481176 cites W2084628485 @default.
- W2316481176 cites W2086539999 @default.
- W2316481176 cites W2089240206 @default.
- W2316481176 cites W2107660105 @default.
- W2316481176 cites W2123937325 @default.
- W2316481176 cites W2126085622 @default.
- W2316481176 cites W2126352672 @default.
- W2316481176 cites W2135438801 @default.
- W2316481176 cites W2140594407 @default.
- W2316481176 cites W2157110694 @default.
- W2316481176 cites W2168233659 @default.
- W2316481176 cites W2313605756 @default.
- W2316481176 cites W2578087953 @default.
- W2316481176 doi "https://doi.org/10.1021/cg300915p" @default.
- W2316481176 hasPublicationYear "2012" @default.
- W2316481176 type Work @default.
- W2316481176 sameAs 2316481176 @default.
- W2316481176 citedByCount "58" @default.
- W2316481176 countsByYear W23164811762013 @default.
- W2316481176 countsByYear W23164811762014 @default.
- W2316481176 countsByYear W23164811762015 @default.
- W2316481176 countsByYear W23164811762016 @default.
- W2316481176 countsByYear W23164811762017 @default.
- W2316481176 countsByYear W23164811762018 @default.
- W2316481176 countsByYear W23164811762019 @default.
- W2316481176 countsByYear W23164811762021 @default.
- W2316481176 countsByYear W23164811762022 @default.
- W2316481176 countsByYear W23164811762023 @default.
- W2316481176 crossrefType "journal-article" @default.
- W2316481176 hasAuthorship W2316481176A5001323251 @default.
- W2316481176 hasAuthorship W2316481176A5008457124 @default.
- W2316481176 hasAuthorship W2316481176A5021133916 @default.
- W2316481176 hasAuthorship W2316481176A5049731598 @default.
- W2316481176 hasAuthorship W2316481176A5085424621 @default.
- W2316481176 hasConcept C120665830 @default.
- W2316481176 hasConcept C121332964 @default.
- W2316481176 hasConcept C127413603 @default.