Matches in SemOpenAlex for { <https://semopenalex.org/work/W2040255176> ?p ?o ?g. }
- W2040255176 endingPage "666" @default.
- W2040255176 startingPage "657" @default.
- W2040255176 abstract "FeAs-based layered superconductors such as F-doped LaFeAsO have recently been investigated intensively because of their high superconducting transition temperatures. Epitaxial films of these compounds are important to examine their intrinsic materials properties as well as to transfer them to device applications. In this review, we first present our research route from transparent p-type oxides semiconductors to the Fe-based superconductors. Then we review growth of epitaxial thin films for the layered oxychalcogenides and oxypnictides. Reactive solid-phase epitaxy technique was inevitable to prepare epitaxial thin films of the oxychalcogenides and Zn-based oxypnictides. On the other hand, epitaxial thin films of Mn-based oxypnictides were grown by standard pulsed laser deposition. These techniques, however, did not grow epitaxial thin films for LaFeAsO. Thus, we developed a modified pulsed laser deposition process and succeeded in obtaining epitaxial thin films of FeAs-based superconductors, LaFeAsO and cobalt-doped SrFe2As2." @default.
- W2040255176 created "2016-06-24" @default.
- W2040255176 creator A5007812423 @default.
- W2040255176 creator A5028237234 @default.
- W2040255176 creator A5050336266 @default.
- W2040255176 creator A5078054212 @default.
- W2040255176 date "2009-05-01" @default.
- W2040255176 modified "2023-10-09" @default.
- W2040255176 title "Heteroepitaxial film growth of layered compounds with the ZrCuSiAs-type and ThCr2Si2-type structures: From Cu-based semiconductors to Fe-based superconductors" @default.
- W2040255176 cites W114526474 @default.
- W2040255176 cites W1542630147 @default.
- W2040255176 cites W1549195150 @default.
- W2040255176 cites W1566288807 @default.
- W2040255176 cites W1578874997 @default.
- W2040255176 cites W1620395065 @default.
- W2040255176 cites W1624804297 @default.
- W2040255176 cites W1648757346 @default.
- W2040255176 cites W1659501886 @default.
- W2040255176 cites W1662807266 @default.
- W2040255176 cites W1843413774 @default.
- W2040255176 cites W1864227942 @default.
- W2040255176 cites W1965692542 @default.
- W2040255176 cites W1969465884 @default.
- W2040255176 cites W1971112172 @default.
- W2040255176 cites W1972826245 @default.
- W2040255176 cites W1978229337 @default.
- W2040255176 cites W1980936552 @default.
- W2040255176 cites W1981665909 @default.
- W2040255176 cites W1982256690 @default.
- W2040255176 cites W1983772671 @default.
- W2040255176 cites W1986250062 @default.
- W2040255176 cites W1988450677 @default.
- W2040255176 cites W1996812337 @default.
- W2040255176 cites W2002218709 @default.
- W2040255176 cites W2007082889 @default.
- W2040255176 cites W2008039154 @default.
- W2040255176 cites W2008487356 @default.
- W2040255176 cites W2010127434 @default.
- W2040255176 cites W2011721578 @default.
- W2040255176 cites W2013505806 @default.
- W2040255176 cites W2015138039 @default.
- W2040255176 cites W2017163198 @default.
- W2040255176 cites W2018450060 @default.
- W2040255176 cites W2021422706 @default.
- W2040255176 cites W2022373457 @default.
- W2040255176 cites W2022761082 @default.
- W2040255176 cites W2023718799 @default.
- W2040255176 cites W2027655480 @default.
- W2040255176 cites W2037398398 @default.
- W2040255176 cites W2037715059 @default.
- W2040255176 cites W2039762898 @default.
- W2040255176 cites W2040938253 @default.
- W2040255176 cites W2041122750 @default.
- W2040255176 cites W2041334860 @default.
- W2040255176 cites W2041760072 @default.
- W2040255176 cites W2043058935 @default.
- W2040255176 cites W2045597054 @default.
- W2040255176 cites W2045725093 @default.
- W2040255176 cites W2046999688 @default.
- W2040255176 cites W2047856694 @default.
- W2040255176 cites W2049433218 @default.
- W2040255176 cites W2049576709 @default.
- W2040255176 cites W2049679442 @default.
- W2040255176 cites W2050343847 @default.
- W2040255176 cites W2053613258 @default.
- W2040255176 cites W2065187155 @default.
- W2040255176 cites W2068354704 @default.
- W2040255176 cites W2071545965 @default.
- W2040255176 cites W2073290887 @default.
- W2040255176 cites W2077848607 @default.
- W2040255176 cites W2079039991 @default.
- W2040255176 cites W2080350964 @default.
- W2040255176 cites W2080402918 @default.
- W2040255176 cites W2082483888 @default.
- W2040255176 cites W2083692503 @default.
- W2040255176 cites W2084163611 @default.
- W2040255176 cites W2086032424 @default.
- W2040255176 cites W2087238590 @default.
- W2040255176 cites W2088223913 @default.
- W2040255176 cites W2090179994 @default.
- W2040255176 cites W2091112718 @default.
- W2040255176 cites W2091360022 @default.
- W2040255176 cites W2091904804 @default.
- W2040255176 cites W2097660728 @default.
- W2040255176 cites W2105377705 @default.
- W2040255176 cites W2147058719 @default.
- W2040255176 cites W2464917953 @default.
- W2040255176 cites W2591860382 @default.
- W2040255176 cites W2950184455 @default.
- W2040255176 cites W2951479175 @default.
- W2040255176 cites W2952035696 @default.
- W2040255176 cites W2952111364 @default.
- W2040255176 cites W2963307825 @default.
- W2040255176 cites W3023127551 @default.
- W2040255176 cites W3101851344 @default.
- W2040255176 cites W3124629079 @default.
- W2040255176 doi "https://doi.org/10.1016/j.physc.2009.03.026" @default.
- W2040255176 hasPublicationYear "2009" @default.