Matches in SemOpenAlex for { <https://semopenalex.org/work/W113881567> ?p ?o ?g. }
- W113881567 endingPage "744" @default.
- W113881567 startingPage "717" @default.
- W113881567 abstract "Publisher Summary This chapter introduces the field of hydrothermal materials synthesis and shows how understanding solution thermodynamics of the aqueous medium can be used for engineering hydrothermal crystallization processes. Hydrothermal synthesis is a material synthesis technology. It utilizes single or heterogeneous phase reactions in aqueous media at elevated temperature and pressure to crystallize ceramic materials directly from the solution. Syntheses are usually conducted at autogeneous pressure. Hydrothermal synthesis is different from solvothermal synthesis methods and soft solution processing. Hydrothermal synthesis offers many advantages over conventional and non-conventional ceramic synthetic methods. All forms of ceramics can be prepared with hydrothermal synthesis, with the costs for instrumentation, energy and precursors being far less, and more environmentally benign than many other synthesis methods. Another important technological advantage of the hydrothermal technique is its capability for a continuous materials production. In order for hydrothermal synthesis to become a mainstream technology, engineering approaches must be available to facilitate rapid-technology development. By designing a hydrothermal process to be thermodynamically favored to form desired products, kinetics limitations of the process can be subsequently resolved. Thermodynamic modeling can be used to design a process to be thermodynamically favored using fundamental principles instead of the Edisonian methods. Such models can perform many functions in the design of hydrothermal experiments." @default.
- W113881567 created "2016-06-24" @default.
- W113881567 creator A5005702399 @default.
- W113881567 creator A5046194853 @default.
- W113881567 creator A5066275207 @default.
- W113881567 date "2004-01-01" @default.
- W113881567 modified "2023-10-17" @default.
- W113881567 title "Hydrothermal synthesis of ceramic materials" @default.
- W113881567 cites W1565265891 @default.
- W113881567 cites W1966923865 @default.
- W113881567 cites W1973217470 @default.
- W113881567 cites W1979887834 @default.
- W113881567 cites W1982189403 @default.
- W113881567 cites W1985281157 @default.
- W113881567 cites W1985939861 @default.
- W113881567 cites W1987238892 @default.
- W113881567 cites W1988484640 @default.
- W113881567 cites W1991620057 @default.
- W113881567 cites W1992617760 @default.
- W113881567 cites W1995096647 @default.
- W113881567 cites W1998665762 @default.
- W113881567 cites W2001027157 @default.
- W113881567 cites W2001390902 @default.
- W113881567 cites W2003890088 @default.
- W113881567 cites W2004701411 @default.
- W113881567 cites W2005926166 @default.
- W113881567 cites W2008663256 @default.
- W113881567 cites W2011572009 @default.
- W113881567 cites W2016624116 @default.
- W113881567 cites W2018125222 @default.
- W113881567 cites W2020150299 @default.
- W113881567 cites W2022542837 @default.
- W113881567 cites W2027513161 @default.
- W113881567 cites W2035695555 @default.
- W113881567 cites W2040863249 @default.
- W113881567 cites W2041431043 @default.
- W113881567 cites W2043206421 @default.
- W113881567 cites W2045221425 @default.
- W113881567 cites W2046023589 @default.
- W113881567 cites W2050363539 @default.
- W113881567 cites W2054003170 @default.
- W113881567 cites W2054733410 @default.
- W113881567 cites W2055408372 @default.
- W113881567 cites W2059231488 @default.
- W113881567 cites W2061711257 @default.
- W113881567 cites W2063027122 @default.
- W113881567 cites W2067581804 @default.
- W113881567 cites W2070688038 @default.
- W113881567 cites W2077211751 @default.
- W113881567 cites W2078259268 @default.
- W113881567 cites W2078463986 @default.
- W113881567 cites W2078869278 @default.
- W113881567 cites W2081258920 @default.
- W113881567 cites W2082654903 @default.
- W113881567 cites W2088621400 @default.
- W113881567 cites W2090833188 @default.
- W113881567 cites W2094469967 @default.
- W113881567 cites W2094818470 @default.
- W113881567 cites W2096824457 @default.
- W113881567 cites W2106799209 @default.
- W113881567 cites W2111656059 @default.
- W113881567 cites W2126849137 @default.
- W113881567 cites W2130403931 @default.
- W113881567 cites W2133461386 @default.
- W113881567 cites W2146941876 @default.
- W113881567 cites W2147642391 @default.
- W113881567 cites W2159897266 @default.
- W113881567 cites W2166080866 @default.
- W113881567 cites W2315787641 @default.
- W113881567 cites W2315892471 @default.
- W113881567 cites W2328720185 @default.
- W113881567 doi "https://doi.org/10.1016/b978-012544461-3/50019-3" @default.
- W113881567 hasPublicationYear "2004" @default.
- W113881567 type Work @default.
- W113881567 sameAs 113881567 @default.
- W113881567 citedByCount "14" @default.
- W113881567 countsByYear W1138815672013 @default.
- W113881567 countsByYear W1138815672016 @default.
- W113881567 countsByYear W1138815672018 @default.
- W113881567 countsByYear W1138815672019 @default.
- W113881567 countsByYear W1138815672021 @default.
- W113881567 countsByYear W1138815672023 @default.
- W113881567 crossrefType "book-chapter" @default.
- W113881567 hasAuthorship W113881567A5005702399 @default.
- W113881567 hasAuthorship W113881567A5046194853 @default.
- W113881567 hasAuthorship W113881567A5066275207 @default.
- W113881567 hasConcept C127413603 @default.
- W113881567 hasConcept C134132462 @default.
- W113881567 hasConcept C156622251 @default.
- W113881567 hasConcept C159985019 @default.
- W113881567 hasConcept C192562407 @default.
- W113881567 hasConcept C2776871784 @default.
- W113881567 hasConcept C42360764 @default.
- W113881567 hasConceptScore W113881567C127413603 @default.
- W113881567 hasConceptScore W113881567C134132462 @default.
- W113881567 hasConceptScore W113881567C156622251 @default.
- W113881567 hasConceptScore W113881567C159985019 @default.
- W113881567 hasConceptScore W113881567C192562407 @default.