Matches in SemOpenAlex for { <https://semopenalex.org/work/W2005156600> ?p ?o ?g. }
- W2005156600 endingPage "12299" @default.
- W2005156600 startingPage "12290" @default.
- W2005156600 abstract "It is known that the molecular architecture plays a fundamental role in the electrical and optical properties of materials processed in the form of thin films. Here, zinc phthalocyanine (ZnPc) thin films were fabricated through the vacuum thermal evaporation technique (PVD, physical vapor deposition) up to 50 nm thickness with the objective of determining their molecular architecture and some electrical and optical properties. Structurally, the results showed a uniform growth of the films depending on how the evaporation is performed (step-by-step or straightforward). The uniform films present a molecular organization dominated by the ZnPc macrocycle ring forming almost 90° in relation to the substrate surface. These films are crystalline (α-form) and possess molecular aggregates in the form of dimers (or higher order of aggregates) and monomers. Such aggregates are seen at the nanometer scale; however, at the micrometer scale, the films are morphologically homogeneous. In relation to the optical properties, it was observed that these films, besides absorbing in the ultraviolet−visible region, present a photoluminescence when irradiated with the 785 nm laser line. In terms of electrical properties, it was determined an electrical conductivity of ca. 10−10 S/m and a significant photoconducting activity. Finally, a dependence of the molecular organization, crystallinity, and optical properties on the film annealing (and thickness) was investigated, and the sensitivity of the ZnPc PVD films against gasoline vapor was tested as proof-of-principle." @default.
- W2005156600 created "2016-06-24" @default.
- W2005156600 creator A5000309408 @default.
- W2005156600 creator A5017922828 @default.
- W2005156600 creator A5044071602 @default.
- W2005156600 creator A5053111276 @default.
- W2005156600 creator A5073192907 @default.
- W2005156600 date "2010-06-24" @default.
- W2005156600 modified "2023-10-05" @default.
- W2005156600 title "Structural and Electric-Optical Properties of Zinc Phthalocyanine Evaporated Thin Films: Temperature and Thickness Effects" @default.
- W2005156600 cites W1966614779 @default.
- W2005156600 cites W1969280946 @default.
- W2005156600 cites W1970156342 @default.
- W2005156600 cites W1971169621 @default.
- W2005156600 cites W1971800637 @default.
- W2005156600 cites W1973996388 @default.
- W2005156600 cites W1974872807 @default.
- W2005156600 cites W1978260008 @default.
- W2005156600 cites W1988034693 @default.
- W2005156600 cites W1988043631 @default.
- W2005156600 cites W1989622454 @default.
- W2005156600 cites W1990082214 @default.
- W2005156600 cites W1990489674 @default.
- W2005156600 cites W1991747762 @default.
- W2005156600 cites W1993392258 @default.
- W2005156600 cites W1993990282 @default.
- W2005156600 cites W2002801537 @default.
- W2005156600 cites W2003045176 @default.
- W2005156600 cites W2004092366 @default.
- W2005156600 cites W2005645383 @default.
- W2005156600 cites W2005653130 @default.
- W2005156600 cites W2009423583 @default.
- W2005156600 cites W2010307920 @default.
- W2005156600 cites W2011578437 @default.
- W2005156600 cites W2012627943 @default.
- W2005156600 cites W2014077701 @default.
- W2005156600 cites W2015114002 @default.
- W2005156600 cites W2015309216 @default.
- W2005156600 cites W2016612293 @default.
- W2005156600 cites W2017032878 @default.
- W2005156600 cites W2017956359 @default.
- W2005156600 cites W2018736253 @default.
- W2005156600 cites W2019239722 @default.
- W2005156600 cites W2020463243 @default.
- W2005156600 cites W2020648227 @default.
- W2005156600 cites W2020815831 @default.
- W2005156600 cites W2021192501 @default.
- W2005156600 cites W2028245069 @default.
- W2005156600 cites W2029226466 @default.
- W2005156600 cites W2029791761 @default.
- W2005156600 cites W2032673363 @default.
- W2005156600 cites W2033336047 @default.
- W2005156600 cites W2035658980 @default.
- W2005156600 cites W2040301999 @default.
- W2005156600 cites W2040650662 @default.
- W2005156600 cites W2041462990 @default.
- W2005156600 cites W2041504780 @default.
- W2005156600 cites W2041782047 @default.
- W2005156600 cites W2042850467 @default.
- W2005156600 cites W2045102377 @default.
- W2005156600 cites W2045197908 @default.
- W2005156600 cites W2047864623 @default.
- W2005156600 cites W2048075218 @default.
- W2005156600 cites W2052645416 @default.
- W2005156600 cites W2058065238 @default.
- W2005156600 cites W2058662193 @default.
- W2005156600 cites W2059597247 @default.
- W2005156600 cites W2060321112 @default.
- W2005156600 cites W2061653129 @default.
- W2005156600 cites W2061777450 @default.
- W2005156600 cites W2062662345 @default.
- W2005156600 cites W2065929689 @default.
- W2005156600 cites W2067297990 @default.
- W2005156600 cites W2077931559 @default.
- W2005156600 cites W2078094268 @default.
- W2005156600 cites W2078666615 @default.
- W2005156600 cites W2081384464 @default.
- W2005156600 cites W2081448802 @default.
- W2005156600 cites W2084930556 @default.
- W2005156600 cites W2085691818 @default.
- W2005156600 cites W2095933944 @default.
- W2005156600 cites W2097552168 @default.
- W2005156600 cites W2113983345 @default.
- W2005156600 cites W2126937083 @default.
- W2005156600 cites W2134528593 @default.
- W2005156600 cites W2141407082 @default.
- W2005156600 cites W2146824128 @default.
- W2005156600 cites W2949894903 @default.
- W2005156600 cites W4230646340 @default.
- W2005156600 cites W4247360573 @default.
- W2005156600 cites W4249266619 @default.
- W2005156600 cites W2015608725 @default.
- W2005156600 doi "https://doi.org/10.1021/jp1008913" @default.
- W2005156600 hasPublicationYear "2010" @default.
- W2005156600 type Work @default.
- W2005156600 sameAs 2005156600 @default.
- W2005156600 citedByCount "56" @default.
- W2005156600 countsByYear W20051566002012 @default.