Advanced Nanomaterials for Catalysis: Synthesis, Characterization, and Application Article Swipe
YOU?
·
· 2015
· Open Access
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· DOI: https://doi.org/10.1155/2015/541801
A great attention is being paid to catalysts which act to enhance the rate or yield of the reaction without being consumed by the reaction itself. Catalysis has become a key strategy in solving many of today’s challenges. Up to now, almost all industrial processes employ catalyst in multiple forms to increase economic viability, frombatteries to refineries. Meanwhile, increased concerns about environmental pollution have led to the development of novel catalysts, which can catalyze desirable chemical reactions. Catalysis is rather prevalent everywhere as a key enabling technology in energy conversion, fuel production, production of chemicals, and environmentalmitigation. On the other hand, nanotechnology has become an indispensable tool ofmaterial engineering for catalysis related applications. Nanoparticles with controlled morphology and structure have a higher surface area, which provide the best platform to catalyze desirable chemical transformations and lead to the increased catalytic activity. The current barrier for widespread industrial and environmental use is ascribed to the controlled synthesis of nanocrystals with high-energy surfaces and the understanding of synthesis-structure-performance relationships. Multidisciplinary advances from chemistry, physics, and materials science have played a major role in catalyst synthesis, structural and compositional modification, and mechanistic understanding with molecular and atomic-level precision by advanced characterization techniques and modeling. Last year, we invited investigators to contribute original research as well as review articles that address the field of advanced nanocatalysts. We encourage manuscripts that will concern new progress in controlled synthesis, thorough understanding of the reaction mechanism and cutting-edge characterization techniques. Today, we are very happy to publish this special issue of this journal. In this issue, original research and review articles are accepted. The research papers focused on nanocatalysts with novel structure produced by innovative synthetic technologies and detailed kinetic mechanism through experiments and promising application.
Related Topics
- Type
- article
- Language
- en
- Landing Page
- https://doi.org/10.1155/2015/541801
- https://downloads.hindawi.com/journals/jnm/2015/541801.pdf
- OA Status
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- Cited By
- 10
- Related Works
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- OpenAlex ID
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Raw OpenAlex JSON
- OpenAlex ID
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https://openalex.org/W2124874045Canonical identifier for this work in OpenAlex
- DOI
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https://doi.org/10.1155/2015/541801Digital Object Identifier
- Title
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Advanced Nanomaterials for Catalysis: Synthesis, Characterization, and ApplicationWork title
- Type
-
articleOpenAlex work type
- Language
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enPrimary language
- Publication year
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2015Year of publication
- Publication date
-
2015-01-01Full publication date if available
- Authors
-
Xianwen Zhang, Xin Zhang, Baojuan Xi, Maofeng ZhangList of authors in order
- Landing page
-
https://doi.org/10.1155/2015/541801Publisher landing page
- PDF URL
-
https://downloads.hindawi.com/journals/jnm/2015/541801.pdfDirect link to full text PDF
- Open access
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YesWhether a free full text is available
- OA status
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hybridOpen access status per OpenAlex
- OA URL
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https://downloads.hindawi.com/journals/jnm/2015/541801.pdfDirect OA link when available
- Concepts
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Characterization (materials science), Nanomaterial-based catalyst, Nanotechnology, Catalysis, Biochemical engineering, Materials science, Environmental pollution, Nanomaterials, Nanoparticle, Chemistry, Engineering, Environmental science, Organic chemistry, Environmental protectionTop concepts (fields/topics) attached by OpenAlex
- Cited by
-
10Total citation count in OpenAlex
- Citations by year (recent)
-
2025: 3, 2024: 2, 2021: 2, 2020: 1, 2017: 1Per-year citation counts (last 5 years)
- Related works (count)
-
10Other works algorithmically related by OpenAlex
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| abstract_inverted_index.this | 250, 254, 257 |
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| abstract_inverted_index.area, | 123 |
| abstract_inverted_index.being | 4, 20 |
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| abstract_inverted_index.major | 178 |
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| abstract_inverted_index.which | 8, 71, 124 |
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| abstract_inverted_index.yield | 15 |
| abstract_inverted_index.Today, | 243 |
| abstract_inverted_index.almost | 41 |
| abstract_inverted_index.become | 28, 103 |
| abstract_inverted_index.employ | 45 |
| abstract_inverted_index.energy | 88 |
| abstract_inverted_index.higher | 121 |
| abstract_inverted_index.issue, | 258 |
| abstract_inverted_index.papers | 268 |
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| abstract_inverted_index.review | 213, 262 |
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| abstract_inverted_index.focused | 269 |
| abstract_inverted_index.invited | 204 |
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| abstract_inverted_index.special | 251 |
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| abstract_inverted_index.advanced | 196, 220 |
| abstract_inverted_index.advances | 168 |
| abstract_inverted_index.articles | 214, 263 |
| abstract_inverted_index.ascribed | 151 |
| abstract_inverted_index.catalyst | 46, 181 |
| abstract_inverted_index.catalyze | 73, 130 |
| abstract_inverted_index.chemical | 75, 132 |
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| abstract_inverted_index.detailed | 281 |
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| abstract_inverted_index.enabling | 85 |
| abstract_inverted_index.increase | 51 |
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| abstract_inverted_index.original | 208, 259 |
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| abstract_inverted_index.reaction | 18, 24, 237 |
| abstract_inverted_index.research | 209, 260, 267 |
| abstract_inverted_index.strategy | 31 |
| abstract_inverted_index.surfaces | 160 |
| abstract_inverted_index.thorough | 233 |
| abstract_inverted_index.Catalysis | 26, 77 |
| abstract_inverted_index.accepted. | 265 |
| abstract_inverted_index.activity. | 140 |
| abstract_inverted_index.attention | 2 |
| abstract_inverted_index.catalysis | 110 |
| abstract_inverted_index.catalysts | 7 |
| abstract_inverted_index.catalytic | 139 |
| abstract_inverted_index.desirable | 74, 131 |
| abstract_inverted_index.encourage | 223 |
| abstract_inverted_index.increased | 58, 138 |
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| abstract_inverted_index.mechanism | 238, 283 |
| abstract_inverted_index.modeling. | 200 |
| abstract_inverted_index.molecular | 191 |
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| abstract_inverted_index.precision | 194 |
| abstract_inverted_index.prevalent | 80 |
| abstract_inverted_index.processes | 44 |
| abstract_inverted_index.promising | 287 |
| abstract_inverted_index.structure | 118, 274 |
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| abstract_inverted_index.synthetic | 278 |
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| abstract_inverted_index.Meanwhile, | 57 |
| abstract_inverted_index.catalysts, | 70 |
| abstract_inverted_index.chemicals, | 94 |
| abstract_inverted_index.chemistry, | 170 |
| abstract_inverted_index.contribute | 207 |
| abstract_inverted_index.controlled | 115, 154, 231 |
| abstract_inverted_index.everywhere | 81 |
| abstract_inverted_index.industrial | 43, 146 |
| abstract_inverted_index.innovative | 277 |
| abstract_inverted_index.morphology | 116 |
| abstract_inverted_index.ofmaterial | 107 |
| abstract_inverted_index.production | 92 |
| abstract_inverted_index.reactions. | 76 |
| abstract_inverted_index.structural | 183 |
| abstract_inverted_index.synthesis, | 182, 232 |
| abstract_inverted_index.techniques | 198 |
| abstract_inverted_index.technology | 86 |
| abstract_inverted_index.viability, | 53 |
| abstract_inverted_index.widespread | 145 |
| abstract_inverted_index.challenges. | 37 |
| abstract_inverted_index.conversion, | 89 |
| abstract_inverted_index.development | 67 |
| abstract_inverted_index.engineering | 108 |
| abstract_inverted_index.experiments | 285 |
| abstract_inverted_index.high-energy | 159 |
| abstract_inverted_index.manuscripts | 224 |
| abstract_inverted_index.mechanistic | 188 |
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| abstract_inverted_index.refineries. | 56 |
| abstract_inverted_index.techniques. | 242 |
| abstract_inverted_index.application. | 288 |
| abstract_inverted_index.atomic-level | 193 |
| abstract_inverted_index.cutting-edge | 240 |
| abstract_inverted_index.nanocrystals | 157 |
| abstract_inverted_index.technologies | 279 |
| abstract_inverted_index.Nanoparticles | 113 |
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| abstract_inverted_index.investigators | 205 |
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| abstract_inverted_index.nanotechnology | 101 |
| abstract_inverted_index.relationships. | 166 |
| abstract_inverted_index.transformations | 133 |
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| abstract_inverted_index.Multidisciplinary | 167 |
| abstract_inverted_index.environmentalmitigation. | 96 |
| abstract_inverted_index.synthesis-structure-performance | 165 |
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| institutions_distinct_count | 4 |
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| citation_normalized_percentile.is_in_top_10_percent | False |