Matches in SemOpenAlex for { <https://semopenalex.org/work/W2021752987> ?p ?o ?g. }
- W2021752987 endingPage "5511" @default.
- W2021752987 startingPage "5508" @default.
- W2021752987 abstract "Mg-doped hematite (α-Fe2O3) was synthesized by atomic layer deposition (ALD). The resulting material was identified as p-type with a hole concentration of ca. 1.7 × 1015 cm–3. When grown on n-type hematite, the p-type layer was found to create a built-in field that could be used to assist photoelectrochemical water splitting reactions. A nominal 200 mV turn-on voltage shift toward the cathodic direction was measured, which is comparable to what has been measured using water oxidation catalysts. This result suggests that it is possible to achieve desired energetics for solar water splitting directly on metal oxides through advanced material preparations. Similar approaches may be used to mitigate problems caused by energy mismatch between water redox potentials and the band edges of hematite and many other low-cost metal oxides, enabling practical solar water splitting as a means for solar energy storage." @default.
- W2021752987 created "2016-06-24" @default.
- W2021752987 creator A5020577953 @default.
- W2021752987 creator A5023603991 @default.
- W2021752987 creator A5040290819 @default.
- W2021752987 creator A5055879028 @default.
- W2021752987 creator A5081339008 @default.
- W2021752987 creator A5087691357 @default.
- W2021752987 creator A5089955909 @default.
- W2021752987 date "2012-03-13" @default.
- W2021752987 modified "2023-10-16" @default.
- W2021752987 title "Growth of p-Type Hematite by Atomic Layer Deposition and Its Utilization for Improved Solar Water Splitting" @default.
- W2021752987 cites W135255352 @default.
- W2021752987 cites W1530088852 @default.
- W2021752987 cites W1964510125 @default.
- W2021752987 cites W1965901228 @default.
- W2021752987 cites W1966151474 @default.
- W2021752987 cites W1971113415 @default.
- W2021752987 cites W1974746615 @default.
- W2021752987 cites W1975148072 @default.
- W2021752987 cites W1976555219 @default.
- W2021752987 cites W1986829915 @default.
- W2021752987 cites W1989500990 @default.
- W2021752987 cites W1993851486 @default.
- W2021752987 cites W2002452890 @default.
- W2021752987 cites W2006647859 @default.
- W2021752987 cites W2009254856 @default.
- W2021752987 cites W2010052150 @default.
- W2021752987 cites W2012153922 @default.
- W2021752987 cites W2012752337 @default.
- W2021752987 cites W2019076873 @default.
- W2021752987 cites W2020014415 @default.
- W2021752987 cites W2032147061 @default.
- W2021752987 cites W2037364079 @default.
- W2021752987 cites W2039475059 @default.
- W2021752987 cites W2043954122 @default.
- W2021752987 cites W2044157182 @default.
- W2021752987 cites W2044781793 @default.
- W2021752987 cites W2060410135 @default.
- W2021752987 cites W2062973998 @default.
- W2021752987 cites W2066655134 @default.
- W2021752987 cites W2074074504 @default.
- W2021752987 cites W2082002999 @default.
- W2021752987 cites W2087711856 @default.
- W2021752987 cites W2088104214 @default.
- W2021752987 cites W2088669499 @default.
- W2021752987 cites W2095284959 @default.
- W2021752987 cites W2103833118 @default.
- W2021752987 cites W2121958253 @default.
- W2021752987 cites W2134319104 @default.
- W2021752987 cites W2138739197 @default.
- W2021752987 cites W2141854536 @default.
- W2021752987 cites W2154903153 @default.
- W2021752987 cites W2157757769 @default.
- W2021752987 cites W2316633064 @default.
- W2021752987 cites W2326264139 @default.
- W2021752987 cites W2334319850 @default.
- W2021752987 cites W2334682583 @default.
- W2021752987 cites W2335488935 @default.
- W2021752987 doi "https://doi.org/10.1021/ja300319g" @default.
- W2021752987 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/22397372" @default.
- W2021752987 hasPublicationYear "2012" @default.
- W2021752987 type Work @default.
- W2021752987 sameAs 2021752987 @default.
- W2021752987 citedByCount "352" @default.
- W2021752987 countsByYear W20217529872012 @default.
- W2021752987 countsByYear W20217529872013 @default.
- W2021752987 countsByYear W20217529872014 @default.
- W2021752987 countsByYear W20217529872015 @default.
- W2021752987 countsByYear W20217529872016 @default.
- W2021752987 countsByYear W20217529872017 @default.
- W2021752987 countsByYear W20217529872018 @default.
- W2021752987 countsByYear W20217529872019 @default.
- W2021752987 countsByYear W20217529872020 @default.
- W2021752987 countsByYear W20217529872021 @default.
- W2021752987 countsByYear W20217529872022 @default.
- W2021752987 countsByYear W20217529872023 @default.
- W2021752987 crossrefType "journal-article" @default.
- W2021752987 hasAuthorship W2021752987A5020577953 @default.
- W2021752987 hasAuthorship W2021752987A5023603991 @default.
- W2021752987 hasAuthorship W2021752987A5040290819 @default.
- W2021752987 hasAuthorship W2021752987A5055879028 @default.
- W2021752987 hasAuthorship W2021752987A5081339008 @default.
- W2021752987 hasAuthorship W2021752987A5087691357 @default.
- W2021752987 hasAuthorship W2021752987A5089955909 @default.
- W2021752987 hasConcept C127413603 @default.
- W2021752987 hasConcept C147789679 @default.
- W2021752987 hasConcept C151730666 @default.
- W2021752987 hasConcept C161790260 @default.
- W2021752987 hasConcept C17525397 @default.
- W2021752987 hasConcept C178790620 @default.
- W2021752987 hasConcept C179104552 @default.
- W2021752987 hasConcept C185592680 @default.
- W2021752987 hasConcept C18903297 @default.
- W2021752987 hasConcept C199289684 @default.
- W2021752987 hasConcept C205871581 @default.
- W2021752987 hasConcept C2779131772 @default.
- W2021752987 hasConcept C2779227376 @default.