Matches in SemOpenAlex for { <https://semopenalex.org/work/W2579165717> ?p ?o ?g. }
- W2579165717 endingPage "1019" @default.
- W2579165717 startingPage "1012" @default.
- W2579165717 abstract "Gold is one of the most valuable materials, and its monetary value is enhanced by size reduction from bullions to colloidal nanoparticles by a factor of 450. Wet-chemical reduction with subsequent centrifugation and pulsed laser ablation in liquids are frequently used for pure colloidal gold synthesis. Both methods provide similar physicochemical nanoparticle properties, but are very different synthesis techniques. However, the costs inherent to these methods are surprisingly seldom discussed. Both methods have in common that the labor effort poses the majority of synthesis costs. Besides an increase in batch size and mass concentration, especially an increase of the nanoparticle productivity via higher laser power and centrifugation capacity reduces synthesis costs if pilot- or industrial-scale applications are intended. In this case, laser-based synthesis is more economical if its productivity exceeds a break-even value of 550 mg h-1 , where the costs arising are limited by the metal costs. In contrast to industrial scale production, wet-chemical synthesis is more feasible for laboratory-scale applications, especially if the advantageous nanoparticle properties provided by laser ablation in liquids are not needed." @default.
- W2579165717 created "2017-01-26" @default.
- W2579165717 creator A5025875670 @default.
- W2579165717 creator A5037507240 @default.
- W2579165717 creator A5064040676 @default.
- W2579165717 creator A5081925401 @default.
- W2579165717 date "2017-02-27" @default.
- W2579165717 modified "2023-09-26" @default.
- W2579165717 title "How Size Determines the Value of Gold: Economic Aspects of Wet Chemical and Laser-Based Metal Colloid Synthesis" @default.
- W2579165717 cites W1760796333 @default.
- W2579165717 cites W1864932638 @default.
- W2579165717 cites W1967761548 @default.
- W2579165717 cites W1968044889 @default.
- W2579165717 cites W1973928612 @default.
- W2579165717 cites W1975572573 @default.
- W2579165717 cites W1977125458 @default.
- W2579165717 cites W1982884613 @default.
- W2579165717 cites W1994266956 @default.
- W2579165717 cites W1994615684 @default.
- W2579165717 cites W1996570677 @default.
- W2579165717 cites W2004664887 @default.
- W2579165717 cites W2004941122 @default.
- W2579165717 cites W2024834460 @default.
- W2579165717 cites W2028321640 @default.
- W2579165717 cites W2044375565 @default.
- W2579165717 cites W2045276693 @default.
- W2579165717 cites W2046890061 @default.
- W2579165717 cites W2047138085 @default.
- W2579165717 cites W2051750388 @default.
- W2579165717 cites W2061994663 @default.
- W2579165717 cites W2068372707 @default.
- W2579165717 cites W2072523903 @default.
- W2579165717 cites W2077228161 @default.
- W2579165717 cites W2078833116 @default.
- W2579165717 cites W2086699215 @default.
- W2579165717 cites W2094107695 @default.
- W2579165717 cites W2099412187 @default.
- W2579165717 cites W2107729400 @default.
- W2579165717 cites W2113950727 @default.
- W2579165717 cites W2115029038 @default.
- W2579165717 cites W2129998516 @default.
- W2579165717 cites W2141858166 @default.
- W2579165717 cites W2151399844 @default.
- W2579165717 cites W2165810383 @default.
- W2579165717 cites W2175195239 @default.
- W2579165717 cites W2278834796 @default.
- W2579165717 cites W2303828474 @default.
- W2579165717 cites W2317222738 @default.
- W2579165717 cites W2322010143 @default.
- W2579165717 cites W2328821159 @default.
- W2579165717 cites W2407247302 @default.
- W2579165717 cites W2563886741 @default.
- W2579165717 cites W2572115360 @default.
- W2579165717 doi "https://doi.org/10.1002/cphc.201601139" @default.
- W2579165717 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/28092122" @default.
- W2579165717 hasPublicationYear "2017" @default.
- W2579165717 type Work @default.
- W2579165717 sameAs 2579165717 @default.
- W2579165717 citedByCount "78" @default.
- W2579165717 countsByYear W25791657172017 @default.
- W2579165717 countsByYear W25791657172018 @default.
- W2579165717 countsByYear W25791657172019 @default.
- W2579165717 countsByYear W25791657172020 @default.
- W2579165717 countsByYear W25791657172021 @default.
- W2579165717 countsByYear W25791657172022 @default.
- W2579165717 countsByYear W25791657172023 @default.
- W2579165717 crossrefType "journal-article" @default.
- W2579165717 hasAuthorship W2579165717A5025875670 @default.
- W2579165717 hasAuthorship W2579165717A5037507240 @default.
- W2579165717 hasAuthorship W2579165717A5064040676 @default.
- W2579165717 hasAuthorship W2579165717A5081925401 @default.
- W2579165717 hasConcept C100536367 @default.
- W2579165717 hasConcept C104819515 @default.
- W2579165717 hasConcept C120665830 @default.
- W2579165717 hasConcept C121332964 @default.
- W2579165717 hasConcept C123424951 @default.
- W2579165717 hasConcept C127413603 @default.
- W2579165717 hasConcept C155672457 @default.
- W2579165717 hasConcept C171250308 @default.
- W2579165717 hasConcept C178790620 @default.
- W2579165717 hasConcept C185592680 @default.
- W2579165717 hasConcept C192562407 @default.
- W2579165717 hasConcept C200649887 @default.
- W2579165717 hasConcept C21880701 @default.
- W2579165717 hasConcept C2779188808 @default.
- W2579165717 hasConcept C42360764 @default.
- W2579165717 hasConcept C520434653 @default.
- W2579165717 hasConcept C59789625 @default.
- W2579165717 hasConceptScore W2579165717C100536367 @default.
- W2579165717 hasConceptScore W2579165717C104819515 @default.
- W2579165717 hasConceptScore W2579165717C120665830 @default.
- W2579165717 hasConceptScore W2579165717C121332964 @default.
- W2579165717 hasConceptScore W2579165717C123424951 @default.
- W2579165717 hasConceptScore W2579165717C127413603 @default.
- W2579165717 hasConceptScore W2579165717C155672457 @default.
- W2579165717 hasConceptScore W2579165717C171250308 @default.
- W2579165717 hasConceptScore W2579165717C178790620 @default.
- W2579165717 hasConceptScore W2579165717C185592680 @default.