Nanomaterials Based on Fe3O4 and Phthalocyanines Derived from Cashew Nut Shell Liquid Article Swipe
YOU?
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· 2019
· Open Access
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· DOI: https://doi.org/10.3390/molecules24183284
In this work we report the synthesis of new hybrid nanomaterials in the core/shell/shell morphology, consisting of a magnetite core (Fe3O4) and two consecutive layers of oleic acid (OA) and phthalocyanine molecules, the latter derived from cashew nut shell liquid (CNSL). The synthesis of Fe3O4 nanoparticle was performed via co-precipitation procedure, followed by the nanoparticle coating with OA by hydrothermal method. The phthalocyanines anchorage on the Fe3O4/OA core/shell nanomaterial was performed by facile and effective sonication method. The as obtained Fe3O4/OA/phthalocyanine hybrids were investigated by Fourier transform infrared spectroscopy, X-ray diffraction, UV-visible spectroscopy, transmission electron microscopy (TEM), thermogravimetric analysis and magnetic measurements. TEM showed round-shaped nanomaterials with sizes in the range of 12–15 nm. Nanomaterials presented saturation magnetization (Ms) in the 1–16 emu/g and superparamagnetic behavior. Furthermore, it was observed that the thermal stability of the samples was directly affected by the insertion of different transition metals in the ring cavity of the phthalocyanine molecule.
Related Topics
- Type
- article
- Language
- en
- Landing Page
- https://doi.org/10.3390/molecules24183284
- https://www.mdpi.com/1420-3049/24/18/3284/pdf
- OA Status
- gold
- Cited By
- 13
- References
- 43
- Related Works
- 10
- OpenAlex ID
- https://openalex.org/W2972513732
Raw OpenAlex JSON
- OpenAlex ID
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https://openalex.org/W2972513732Canonical identifier for this work in OpenAlex
- DOI
-
https://doi.org/10.3390/molecules24183284Digital Object Identifier
- Title
-
Nanomaterials Based on Fe3O4 and Phthalocyanines Derived from Cashew Nut Shell LiquidWork title
- Type
-
articleOpenAlex work type
- Language
-
enPrimary language
- Publication year
-
2019Year of publication
- Publication date
-
2019-09-09Full publication date if available
- Authors
-
Viviane G. P. Ribeiro, João Paulo Ferreira Mota, Antônio E. Costa Júnior, Nayane M. A. Lima, Pierre Basílio Almeida Fechine, Juliano C. Denardin, Luigi Carbone, Ermelinda Bloise, Giuseppe Mele, Selma Elaine MazzettoList of authors in order
- Landing page
-
https://doi.org/10.3390/molecules24183284Publisher landing page
- PDF URL
-
https://www.mdpi.com/1420-3049/24/18/3284/pdfDirect link to full text PDF
- Open access
-
YesWhether a free full text is available
- OA status
-
goldOpen access status per OpenAlex
- OA URL
-
https://www.mdpi.com/1420-3049/24/18/3284/pdfDirect OA link when available
- Concepts
-
Nanomaterials, Thermogravimetric analysis, Materials science, Superparamagnetism, Phthalocyanine, Nanoparticle, Fourier transform infrared spectroscopy, Chemical engineering, Transmission electron microscopy, Nanotechnology, Magnetization, Physics, Quantum mechanics, Engineering, Magnetic fieldTop concepts (fields/topics) attached by OpenAlex
- Cited by
-
13Total citation count in OpenAlex
- Citations by year (recent)
-
2024: 3, 2023: 3, 2022: 4, 2021: 1, 2019: 2Per-year citation counts (last 5 years)
- References (count)
-
43Number of works referenced by this work
- Related works (count)
-
10Other works algorithmically related by OpenAlex
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| abstract_inverted_index.(TEM), | 96 |
| abstract_inverted_index.1–16 | 121 |
| abstract_inverted_index.cashew | 36 |
| abstract_inverted_index.cavity | 150 |
| abstract_inverted_index.facile | 72 |
| abstract_inverted_index.hybrid | 9 |
| abstract_inverted_index.latter | 33 |
| abstract_inverted_index.layers | 24 |
| abstract_inverted_index.liquid | 39 |
| abstract_inverted_index.metals | 146 |
| abstract_inverted_index.report | 4 |
| abstract_inverted_index.showed | 103 |
| abstract_inverted_index.(CNSL). | 40 |
| abstract_inverted_index.(Fe3O4) | 20 |
| abstract_inverted_index.12–15 | 112 |
| abstract_inverted_index.Fourier | 85 |
| abstract_inverted_index.coating | 55 |
| abstract_inverted_index.derived | 34 |
| abstract_inverted_index.hybrids | 81 |
| abstract_inverted_index.method. | 60, 76 |
| abstract_inverted_index.samples | 136 |
| abstract_inverted_index.thermal | 132 |
| abstract_inverted_index.Fe3O4/OA | 66 |
| abstract_inverted_index.affected | 139 |
| abstract_inverted_index.analysis | 98 |
| abstract_inverted_index.directly | 138 |
| abstract_inverted_index.electron | 94 |
| abstract_inverted_index.followed | 51 |
| abstract_inverted_index.infrared | 87 |
| abstract_inverted_index.magnetic | 100 |
| abstract_inverted_index.observed | 129 |
| abstract_inverted_index.obtained | 79 |
| abstract_inverted_index.anchorage | 63 |
| abstract_inverted_index.behavior. | 125 |
| abstract_inverted_index.different | 144 |
| abstract_inverted_index.effective | 74 |
| abstract_inverted_index.insertion | 142 |
| abstract_inverted_index.magnetite | 18 |
| abstract_inverted_index.molecule. | 154 |
| abstract_inverted_index.performed | 47, 70 |
| abstract_inverted_index.presented | 115 |
| abstract_inverted_index.stability | 133 |
| abstract_inverted_index.synthesis | 6, 42 |
| abstract_inverted_index.transform | 86 |
| abstract_inverted_index.UV-visible | 91 |
| abstract_inverted_index.consisting | 15 |
| abstract_inverted_index.core/shell | 67 |
| abstract_inverted_index.microscopy | 95 |
| abstract_inverted_index.molecules, | 31 |
| abstract_inverted_index.procedure, | 50 |
| abstract_inverted_index.saturation | 116 |
| abstract_inverted_index.sonication | 75 |
| abstract_inverted_index.transition | 145 |
| abstract_inverted_index.consecutive | 23 |
| abstract_inverted_index.morphology, | 14 |
| abstract_inverted_index.Furthermore, | 126 |
| abstract_inverted_index.diffraction, | 90 |
| abstract_inverted_index.hydrothermal | 59 |
| abstract_inverted_index.investigated | 83 |
| abstract_inverted_index.nanomaterial | 68 |
| abstract_inverted_index.nanoparticle | 45, 54 |
| abstract_inverted_index.round-shaped | 104 |
| abstract_inverted_index.transmission | 93 |
| abstract_inverted_index.Nanomaterials | 114 |
| abstract_inverted_index.magnetization | 117 |
| abstract_inverted_index.measurements. | 101 |
| abstract_inverted_index.nanomaterials | 10, 105 |
| abstract_inverted_index.spectroscopy, | 88, 92 |
| abstract_inverted_index.phthalocyanine | 30, 153 |
| abstract_inverted_index.phthalocyanines | 62 |
| abstract_inverted_index.co-precipitation | 49 |
| abstract_inverted_index.core/shell/shell | 13 |
| abstract_inverted_index.superparamagnetic | 124 |
| abstract_inverted_index.thermogravimetric | 97 |
| abstract_inverted_index.Fe3O4/OA/phthalocyanine | 80 |
| cited_by_percentile_year.max | 97 |
| cited_by_percentile_year.min | 89 |
| corresponding_author_ids | https://openalex.org/A5015187902 |
| countries_distinct_count | 3 |
| institutions_distinct_count | 10 |
| corresponding_institution_ids | https://openalex.org/I142910587 |
| citation_normalized_percentile.value | 0.59803737 |
| citation_normalized_percentile.is_in_top_1_percent | False |
| citation_normalized_percentile.is_in_top_10_percent | False |