Matches in SemOpenAlex for { <https://semopenalex.org/work/W2912702427> ?p ?o ?g. }
- W2912702427 endingPage "21" @default.
- W2912702427 startingPage "12" @default.
- W2912702427 abstract "Cu2ZnSnS4 (CZTS) nanocrystals (NCs) were produced via hot-injection from metal chloride precursors. A systematic investigation of the influence of synthesis conditions on composition, size and microstructure of CZTS NCs is presented. The results show that the solvent amount (oleylamine) is a key parameter in the synthesis of this quaternary chalcogenide: a low solvent content leads to CZTS NCs with a prominent kesterite phase with the desired composition for use as absorber material in thin film photovoltaic cells. It is also observed that lowering the injection temperature (250 °C) favours formation of CZTS NCs in the wurtzite phase. The effect of different high temperature thermal treatments on the grain growth is also shown: large crystals are obtained with annealing in inert atmosphere, whereas nanocrystalline films are obtained introducing sulphur vapour during the heat treatment. A correlation between the grain dimension and the carbonaceous residues in the final films is investigated. It is shown that the grain growth is hindered by organic residues, amount and nature of which depend on the heat treatment atmosphere. In fact, oleylamine is removed by a complex pyrolytic process, which is affected by the presence of sulphur vapour. The latter favours the stability of oleylamine residuals against its non-oxidative release." @default.
- W2912702427 created "2019-02-21" @default.
- W2912702427 creator A5011179301 @default.
- W2912702427 creator A5030155765 @default.
- W2912702427 creator A5047143742 @default.
- W2912702427 creator A5066514149 @default.
- W2912702427 creator A5069788467 @default.
- W2912702427 creator A5079225707 @default.
- W2912702427 creator A5081432461 @default.
- W2912702427 date "2019-03-01" @default.
- W2912702427 modified "2023-09-25" @default.
- W2912702427 title "Control of composition and grain growth in Cu2ZnSnS4 thin films from nanoparticle inks" @default.
- W2912702427 cites W1508977243 @default.
- W2912702427 cites W1542154975 @default.
- W2912702427 cites W1655575846 @default.
- W2912702427 cites W1751175530 @default.
- W2912702427 cites W1961129428 @default.
- W2912702427 cites W1963536457 @default.
- W2912702427 cites W1979316113 @default.
- W2912702427 cites W1979583260 @default.
- W2912702427 cites W1989773221 @default.
- W2912702427 cites W1991873767 @default.
- W2912702427 cites W1995809167 @default.
- W2912702427 cites W1999363039 @default.
- W2912702427 cites W2004718710 @default.
- W2912702427 cites W2004870983 @default.
- W2912702427 cites W2010640773 @default.
- W2912702427 cites W2032740093 @default.
- W2912702427 cites W2033292527 @default.
- W2912702427 cites W2034773673 @default.
- W2912702427 cites W2036073104 @default.
- W2912702427 cites W2040434556 @default.
- W2912702427 cites W2047044732 @default.
- W2912702427 cites W2047147766 @default.
- W2912702427 cites W2055831685 @default.
- W2912702427 cites W2059701251 @default.
- W2912702427 cites W2060086690 @default.
- W2912702427 cites W2060775752 @default.
- W2912702427 cites W2061689131 @default.
- W2912702427 cites W2063595745 @default.
- W2912702427 cites W2066797269 @default.
- W2912702427 cites W2066910494 @default.
- W2912702427 cites W2069093193 @default.
- W2912702427 cites W2071385359 @default.
- W2912702427 cites W2072682686 @default.
- W2912702427 cites W2080929827 @default.
- W2912702427 cites W2088283189 @default.
- W2912702427 cites W2091279318 @default.
- W2912702427 cites W2093201511 @default.
- W2912702427 cites W2117092733 @default.
- W2912702427 cites W2120528604 @default.
- W2912702427 cites W2153432543 @default.
- W2912702427 cites W2157611952 @default.
- W2912702427 cites W2167441348 @default.
- W2912702427 cites W2316235021 @default.
- W2912702427 cites W2320377477 @default.
- W2912702427 cites W2397059919 @default.
- W2912702427 cites W2465184062 @default.
- W2912702427 cites W2536558006 @default.
- W2912702427 cites W2584128856 @default.
- W2912702427 cites W2589096117 @default.
- W2912702427 cites W2589840289 @default.
- W2912702427 cites W2594497563 @default.
- W2912702427 cites W2604719444 @default.
- W2912702427 doi "https://doi.org/10.1016/j.tsf.2019.02.004" @default.
- W2912702427 hasPublicationYear "2019" @default.
- W2912702427 type Work @default.
- W2912702427 sameAs 2912702427 @default.
- W2912702427 citedByCount "22" @default.
- W2912702427 countsByYear W29127024272019 @default.
- W2912702427 countsByYear W29127024272020 @default.
- W2912702427 countsByYear W29127024272021 @default.
- W2912702427 countsByYear W29127024272022 @default.
- W2912702427 countsByYear W29127024272023 @default.
- W2912702427 crossrefType "journal-article" @default.
- W2912702427 hasAuthorship W2912702427A5011179301 @default.
- W2912702427 hasAuthorship W2912702427A5030155765 @default.
- W2912702427 hasAuthorship W2912702427A5047143742 @default.
- W2912702427 hasAuthorship W2912702427A5066514149 @default.
- W2912702427 hasAuthorship W2912702427A5069788467 @default.
- W2912702427 hasAuthorship W2912702427A5079225707 @default.
- W2912702427 hasAuthorship W2912702427A5081432461 @default.
- W2912702427 hasConcept C127413603 @default.
- W2912702427 hasConcept C140676511 @default.
- W2912702427 hasConcept C155672457 @default.
- W2912702427 hasConcept C171250308 @default.
- W2912702427 hasConcept C175854130 @default.
- W2912702427 hasConcept C19067145 @default.
- W2912702427 hasConcept C191897082 @default.
- W2912702427 hasConcept C192191005 @default.
- W2912702427 hasConcept C192562407 @default.
- W2912702427 hasConcept C2775851497 @default.
- W2912702427 hasConcept C2778177714 @default.
- W2912702427 hasConcept C2779728058 @default.
- W2912702427 hasConcept C2779775279 @default.
- W2912702427 hasConcept C3045981 @default.
- W2912702427 hasConcept C42360764 @default.
- W2912702427 hasConcept C535196362 @default.