Matches in SemOpenAlex for { <https://semopenalex.org/work/W1968603722> ?p ?o ?g. }
- W1968603722 endingPage "2586" @default.
- W1968603722 startingPage "2579" @default.
- W1968603722 abstract "Aberration corrected scanning transmission electron microscopy (STEM) with high angle annular dark field (HAADF) imaging and the newly developed annular bright field (ABF) imaging are used to define a new guideline for the polarity determination of semiconductor nanowires (NWs) from binary compounds in two extreme cases: (i) when the dumbbell is formed with atoms of similar mass (GaAs) and (ii) in the case where one of the atoms is extremely light (N or O: ZnO and GaN/AlN). The theoretical fundaments of these procedures allow us to overcome the main challenge in the identification of dumbbell polarity. It resides in the separation and identification of the constituent atoms in the dumbbells. The proposed experimental via opens new routes for the fine characterization of nanostructures, e.g., in electronic and optoelectronic fields, where the polarity is crucial for the understanding of their physical properties (optical and electronic) as well as their growth mechanisms." @default.
- W1968603722 created "2016-06-24" @default.
- W1968603722 creator A5002665522 @default.
- W1968603722 creator A5003177096 @default.
- W1968603722 creator A5007199622 @default.
- W1968603722 creator A5011963892 @default.
- W1968603722 creator A5012137737 @default.
- W1968603722 creator A5012616884 @default.
- W1968603722 creator A5013293385 @default.
- W1968603722 creator A5052307330 @default.
- W1968603722 creator A5052624695 @default.
- W1968603722 creator A5057544297 @default.
- W1968603722 creator A5060053457 @default.
- W1968603722 creator A5063174358 @default.
- W1968603722 creator A5074866595 @default.
- W1968603722 creator A5083376502 @default.
- W1968603722 creator A5084904295 @default.
- W1968603722 date "2012-04-17" @default.
- W1968603722 modified "2023-10-18" @default.
- W1968603722 title "Polarity Assignment in ZnTe, GaAs, ZnO, and GaN-AlN Nanowires from Direct Dumbbell Analysis" @default.
- W1968603722 cites W1516056461 @default.
- W1968603722 cites W1715211610 @default.
- W1968603722 cites W1964782120 @default.
- W1968603722 cites W1968582548 @default.
- W1968603722 cites W1978923803 @default.
- W1968603722 cites W1981794368 @default.
- W1968603722 cites W1985063847 @default.
- W1968603722 cites W1985252301 @default.
- W1968603722 cites W1985808045 @default.
- W1968603722 cites W1986985472 @default.
- W1968603722 cites W1987769601 @default.
- W1968603722 cites W1988802142 @default.
- W1968603722 cites W1990566027 @default.
- W1968603722 cites W1990766539 @default.
- W1968603722 cites W1993378267 @default.
- W1968603722 cites W1997468426 @default.
- W1968603722 cites W1999363039 @default.
- W1968603722 cites W2005187458 @default.
- W1968603722 cites W2006170575 @default.
- W1968603722 cites W2006391046 @default.
- W1968603722 cites W2020708790 @default.
- W1968603722 cites W2023805513 @default.
- W1968603722 cites W2026033051 @default.
- W1968603722 cites W2026628980 @default.
- W1968603722 cites W2027642713 @default.
- W1968603722 cites W2028404493 @default.
- W1968603722 cites W2029290154 @default.
- W1968603722 cites W2030383355 @default.
- W1968603722 cites W2035029271 @default.
- W1968603722 cites W2035886501 @default.
- W1968603722 cites W2037010383 @default.
- W1968603722 cites W2038406409 @default.
- W1968603722 cites W2039078170 @default.
- W1968603722 cites W2044425206 @default.
- W1968603722 cites W2046572381 @default.
- W1968603722 cites W2046572711 @default.
- W1968603722 cites W2051072514 @default.
- W1968603722 cites W2053818373 @default.
- W1968603722 cites W2058146022 @default.
- W1968603722 cites W2060055265 @default.
- W1968603722 cites W2060671706 @default.
- W1968603722 cites W2060831633 @default.
- W1968603722 cites W2062914959 @default.
- W1968603722 cites W2063444962 @default.
- W1968603722 cites W2066744201 @default.
- W1968603722 cites W2067293580 @default.
- W1968603722 cites W2068685493 @default.
- W1968603722 cites W2077086229 @default.
- W1968603722 cites W2083447437 @default.
- W1968603722 cites W2085492926 @default.
- W1968603722 cites W2087195746 @default.
- W1968603722 cites W2088022088 @default.
- W1968603722 cites W2089782369 @default.
- W1968603722 cites W2094463226 @default.
- W1968603722 cites W2096974345 @default.
- W1968603722 cites W2099315789 @default.
- W1968603722 cites W2104596853 @default.
- W1968603722 cites W2110167104 @default.
- W1968603722 cites W2122727913 @default.
- W1968603722 cites W2125978209 @default.
- W1968603722 cites W2128629135 @default.
- W1968603722 cites W2132872911 @default.
- W1968603722 cites W2133159874 @default.
- W1968603722 cites W2133424807 @default.
- W1968603722 cites W2136359657 @default.
- W1968603722 cites W2141523934 @default.
- W1968603722 cites W2150814885 @default.
- W1968603722 cites W2151513437 @default.
- W1968603722 cites W2169075240 @default.
- W1968603722 cites W2169091958 @default.
- W1968603722 cites W2171363088 @default.
- W1968603722 cites W2318913712 @default.
- W1968603722 cites W2327362266 @default.
- W1968603722 cites W4250521397 @default.
- W1968603722 cites W4361864726 @default.
- W1968603722 doi "https://doi.org/10.1021/nl300840q" @default.
- W1968603722 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/22493937" @default.
- W1968603722 hasPublicationYear "2012" @default.