Matches in SemOpenAlex for { <https://semopenalex.org/work/W2520244498> ?p ?o ?g. }
- W2520244498 endingPage "156" @default.
- W2520244498 startingPage "144" @default.
- W2520244498 abstract "Details of charge density distribution at p-n nano interface are analyzed with density functional theory techniques using model system of dimers of doped silicon quantum dots interacting through bond and through space. Spatial distributions of transition densities between the ground and excited states suggest the character of essential electronic excitations, which have a Fӧrster, bound, unbound, or charge transfer character. A redistribution of electronic density from n-impurities to p-impurities results in a ground state polarization and creates an offset of energies of the bands localized on p-doped quantum dot and the bands localized on n-doped quantum dot. Although impurities contribute very few orbitals to the total density, a ground state charge redistribution and polarization are both responsible for the presence of a large number of charge transfer excitations involving solely silicon orbitals." @default.
- W2520244498 created "2016-09-23" @default.
- W2520244498 creator A5042811544 @default.
- W2520244498 creator A5043270824 @default.
- W2520244498 creator A5056150849 @default.
- W2520244498 creator A5087381063 @default.
- W2520244498 date "2016-12-01" @default.
- W2520244498 modified "2023-09-26" @default.
- W2520244498 title "Through space and through bridge channels of charge transfer at p-n nano-junctions: A DFT study" @default.
- W2520244498 cites W1460501995 @default.
- W2520244498 cites W1528038668 @default.
- W2520244498 cites W1965188134 @default.
- W2520244498 cites W1965729011 @default.
- W2520244498 cites W1971262578 @default.
- W2520244498 cites W1971618125 @default.
- W2520244498 cites W1973336827 @default.
- W2520244498 cites W1976805841 @default.
- W2520244498 cites W1978280995 @default.
- W2520244498 cites W1980295402 @default.
- W2520244498 cites W1982170663 @default.
- W2520244498 cites W1985555064 @default.
- W2520244498 cites W1987222141 @default.
- W2520244498 cites W1988723804 @default.
- W2520244498 cites W1989616324 @default.
- W2520244498 cites W1992140523 @default.
- W2520244498 cites W1993035872 @default.
- W2520244498 cites W1993946922 @default.
- W2520244498 cites W1994129483 @default.
- W2520244498 cites W1994528138 @default.
- W2520244498 cites W1994807663 @default.
- W2520244498 cites W1998047230 @default.
- W2520244498 cites W1999194691 @default.
- W2520244498 cites W2001139789 @default.
- W2520244498 cites W2013879396 @default.
- W2520244498 cites W2020597842 @default.
- W2520244498 cites W2020819803 @default.
- W2520244498 cites W2022400017 @default.
- W2520244498 cites W2025129316 @default.
- W2520244498 cites W2025516544 @default.
- W2520244498 cites W2027056099 @default.
- W2520244498 cites W2029637177 @default.
- W2520244498 cites W2031418966 @default.
- W2520244498 cites W2033533351 @default.
- W2520244498 cites W2033579155 @default.
- W2520244498 cites W2033581825 @default.
- W2520244498 cites W2035579953 @default.
- W2520244498 cites W2044591029 @default.
- W2520244498 cites W2046270983 @default.
- W2520244498 cites W2047235066 @default.
- W2520244498 cites W2047251603 @default.
- W2520244498 cites W2049092431 @default.
- W2520244498 cites W2062274089 @default.
- W2520244498 cites W2062624166 @default.
- W2520244498 cites W2062852634 @default.
- W2520244498 cites W2064928939 @default.
- W2520244498 cites W2065590414 @default.
- W2520244498 cites W2067109283 @default.
- W2520244498 cites W2070502695 @default.
- W2520244498 cites W2073933042 @default.
- W2520244498 cites W2074138570 @default.
- W2520244498 cites W2081249825 @default.
- W2520244498 cites W2084757366 @default.
- W2520244498 cites W2085093563 @default.
- W2520244498 cites W2086197232 @default.
- W2520244498 cites W2086845909 @default.
- W2520244498 cites W2089632982 @default.
- W2520244498 cites W2092670906 @default.
- W2520244498 cites W2093160704 @default.
- W2520244498 cites W2094517427 @default.
- W2520244498 cites W2096053815 @default.
- W2520244498 cites W2116645428 @default.
- W2520244498 cites W2116956555 @default.
- W2520244498 cites W2136209035 @default.
- W2520244498 cites W2143075097 @default.
- W2520244498 cites W2239301903 @default.
- W2520244498 cites W2314719397 @default.
- W2520244498 cites W2316112026 @default.
- W2520244498 cites W2322801031 @default.
- W2520244498 cites W2330664798 @default.
- W2520244498 cites W2330680182 @default.
- W2520244498 cites W2330759632 @default.
- W2520244498 cites W2481596649 @default.
- W2520244498 cites W2498182391 @default.
- W2520244498 cites W2950074512 @default.
- W2520244498 cites W2962984992 @default.
- W2520244498 cites W3103705549 @default.
- W2520244498 doi "https://doi.org/10.1016/j.chemphys.2016.09.003" @default.
- W2520244498 hasPublicationYear "2016" @default.
- W2520244498 type Work @default.
- W2520244498 sameAs 2520244498 @default.
- W2520244498 citedByCount "6" @default.
- W2520244498 countsByYear W25202444982017 @default.
- W2520244498 countsByYear W25202444982018 @default.
- W2520244498 countsByYear W25202444982019 @default.
- W2520244498 countsByYear W25202444982023 @default.
- W2520244498 crossrefType "journal-article" @default.
- W2520244498 hasAuthorship W2520244498A5042811544 @default.
- W2520244498 hasAuthorship W2520244498A5043270824 @default.