Matches in SemOpenAlex for { <https://semopenalex.org/work/W4220698521> ?p ?o ?g. }
- W4220698521 endingPage "126016" @default.
- W4220698521 startingPage "126016" @default.
- W4220698521 abstract "Recently, high attention has been paid to template synthesis as a method for obtaining nanostructures with predetermined shapes and sizes. This is an obvious approach, in which the size and shape of the pores limit the geometry of the nanostructures formed inside them. As a result, nanostructures completely repeat the shape of the template pores. However, in some cases, the morphology of the resulting structures may differ from the shape of the template, and often these differences are not explained. This is a gap in fundamental knowledge on the mechanism of nanostructure growth in a limited template pore volume. In this work, we partially solve this problem. Using silver as an example, it is shown that by changing only the pore volume, without changing other chemical kinetic conditions, it is possible to controllably create nanostructures with complex geometry. Possible morphologies of nanostructures, such as crystallites, dendrites and “sunflower-like structures, formed at critical pore diameters, have been identified. The main points inherent to the formation of silver nanostructures in the pores of the SiO2/Si template using the electroless galvanic displacement method were highlighted. The growth mechanism of silver nanostructures in a limited pore volume has been studied and discussed in details." @default.
- W4220698521 created "2022-04-03" @default.
- W4220698521 creator A5010517112 @default.
- W4220698521 creator A5037711268 @default.
- W4220698521 creator A5043115498 @default.
- W4220698521 creator A5044924065 @default.
- W4220698521 creator A5048158694 @default.
- W4220698521 creator A5049103532 @default.
- W4220698521 creator A5050694762 @default.
- W4220698521 creator A5054312816 @default.
- W4220698521 creator A5058330760 @default.
- W4220698521 creator A5062702828 @default.
- W4220698521 creator A5075465358 @default.
- W4220698521 date "2022-05-01" @default.
- W4220698521 modified "2023-10-10" @default.
- W4220698521 title "Growth mechanism study of silver nanostructures in a limited volume" @default.
- W4220698521 cites W1964080007 @default.
- W4220698521 cites W1969773654 @default.
- W4220698521 cites W1972704923 @default.
- W4220698521 cites W1983231356 @default.
- W4220698521 cites W1984585239 @default.
- W4220698521 cites W1985997303 @default.
- W4220698521 cites W1995888965 @default.
- W4220698521 cites W2013443655 @default.
- W4220698521 cites W2013836822 @default.
- W4220698521 cites W2036973515 @default.
- W4220698521 cites W2037451010 @default.
- W4220698521 cites W2062610058 @default.
- W4220698521 cites W2074370930 @default.
- W4220698521 cites W2096462260 @default.
- W4220698521 cites W2113319838 @default.
- W4220698521 cites W2122317566 @default.
- W4220698521 cites W2129388542 @default.
- W4220698521 cites W2130285841 @default.
- W4220698521 cites W2142181455 @default.
- W4220698521 cites W2143789477 @default.
- W4220698521 cites W2274557695 @default.
- W4220698521 cites W2297482960 @default.
- W4220698521 cites W2337195177 @default.
- W4220698521 cites W2470608422 @default.
- W4220698521 cites W2553526164 @default.
- W4220698521 cites W2559889554 @default.
- W4220698521 cites W2569736776 @default.
- W4220698521 cites W2616310647 @default.
- W4220698521 cites W2791046853 @default.
- W4220698521 cites W2892629252 @default.
- W4220698521 cites W2895434291 @default.
- W4220698521 cites W2913368076 @default.
- W4220698521 cites W2921198768 @default.
- W4220698521 cites W2963301461 @default.
- W4220698521 cites W2969561303 @default.
- W4220698521 cites W2995321354 @default.
- W4220698521 cites W2995835031 @default.
- W4220698521 cites W2999507688 @default.
- W4220698521 cites W2999620194 @default.
- W4220698521 cites W3020979560 @default.
- W4220698521 cites W3027300389 @default.
- W4220698521 cites W3047222022 @default.
- W4220698521 cites W3103498936 @default.
- W4220698521 cites W3159523954 @default.
- W4220698521 doi "https://doi.org/10.1016/j.matchemphys.2022.126016" @default.
- W4220698521 hasPublicationYear "2022" @default.
- W4220698521 type Work @default.
- W4220698521 citedByCount "3" @default.
- W4220698521 countsByYear W42206985212022 @default.
- W4220698521 countsByYear W42206985212023 @default.
- W4220698521 crossrefType "journal-article" @default.
- W4220698521 hasAuthorship W4220698521A5010517112 @default.
- W4220698521 hasAuthorship W4220698521A5037711268 @default.
- W4220698521 hasAuthorship W4220698521A5043115498 @default.
- W4220698521 hasAuthorship W4220698521A5044924065 @default.
- W4220698521 hasAuthorship W4220698521A5048158694 @default.
- W4220698521 hasAuthorship W4220698521A5049103532 @default.
- W4220698521 hasAuthorship W4220698521A5050694762 @default.
- W4220698521 hasAuthorship W4220698521A5054312816 @default.
- W4220698521 hasAuthorship W4220698521A5058330760 @default.
- W4220698521 hasAuthorship W4220698521A5062702828 @default.
- W4220698521 hasAuthorship W4220698521A5075465358 @default.
- W4220698521 hasBestOaLocation W42206985212 @default.
- W4220698521 hasConcept C111472728 @default.
- W4220698521 hasConcept C121332964 @default.
- W4220698521 hasConcept C137637335 @default.
- W4220698521 hasConcept C138885662 @default.
- W4220698521 hasConcept C159985019 @default.
- W4220698521 hasConcept C171250308 @default.
- W4220698521 hasConcept C186187911 @default.
- W4220698521 hasConcept C191897082 @default.
- W4220698521 hasConcept C192562407 @default.
- W4220698521 hasConcept C20556612 @default.
- W4220698521 hasConcept C22016385 @default.
- W4220698521 hasConcept C513153333 @default.
- W4220698521 hasConcept C62520636 @default.
- W4220698521 hasConcept C89611455 @default.
- W4220698521 hasConceptScore W4220698521C111472728 @default.
- W4220698521 hasConceptScore W4220698521C121332964 @default.
- W4220698521 hasConceptScore W4220698521C137637335 @default.
- W4220698521 hasConceptScore W4220698521C138885662 @default.
- W4220698521 hasConceptScore W4220698521C159985019 @default.