Matches in SemOpenAlex for { <https://semopenalex.org/work/W3107568488> ?p ?o ?g. }
Showing items 1 to 90 of
90
with 100 items per page.
- W3107568488 endingPage "114533" @default.
- W3107568488 startingPage "114533" @default.
- W3107568488 abstract "Abstract Density functional theory calculations were performed to examine the interaction between large aromatic molecules such as benzene and phenol and stanene nanosheets. Before we consider the adsorption process, it is very necessary to optimize the atomic structure of the bare stanene and non-adsorbed benzene and phenol molecules. Our results showed that the benzene and phenol molecules are weakly physisorbed on the surface of stanene due to their lower binding energies at the surface. Phenol adsorption strength on the surface of stanene was found to be much stronger than the adsorption of benzene. Besides, the adsorption of benzene and phenol cannot make any considerable change in the electronic properties of stanene sheets. The electron density difference calculations also indicated that the electron density moves from the benzene molecule to the surface of stanene. The change densities were largely accumulated over the stanene sheet. Thus, stanene nanosheet can be suggested as a moderate host material for sensing benzene and phenol molecules." @default.
- W3107568488 created "2020-12-07" @default.
- W3107568488 creator A5028012008 @default.
- W3107568488 creator A5077988657 @default.
- W3107568488 date "2021-03-01" @default.
- W3107568488 modified "2023-10-01" @default.
- W3107568488 title "DFT study of the adsorption of C6H6 and C6H5OH molecules on stanene nanosheets: Applications to sensor devices" @default.
- W3107568488 cites W1152534726 @default.
- W3107568488 cites W1978562598 @default.
- W3107568488 cites W1980164796 @default.
- W3107568488 cites W1990627725 @default.
- W3107568488 cites W1992031820 @default.
- W3107568488 cites W1992856317 @default.
- W3107568488 cites W2015762944 @default.
- W3107568488 cites W2025753495 @default.
- W3107568488 cites W2030976617 @default.
- W3107568488 cites W2036113194 @default.
- W3107568488 cites W2038679007 @default.
- W3107568488 cites W2041307723 @default.
- W3107568488 cites W2045596260 @default.
- W3107568488 cites W2052230080 @default.
- W3107568488 cites W2054704030 @default.
- W3107568488 cites W2082629008 @default.
- W3107568488 cites W2090880400 @default.
- W3107568488 cites W2093325054 @default.
- W3107568488 cites W2105604963 @default.
- W3107568488 cites W2107842672 @default.
- W3107568488 cites W2141704677 @default.
- W3107568488 cites W2144040286 @default.
- W3107568488 cites W2230728100 @default.
- W3107568488 cites W2344064937 @default.
- W3107568488 cites W2345090270 @default.
- W3107568488 cites W2408222349 @default.
- W3107568488 cites W2517062826 @default.
- W3107568488 cites W2561628370 @default.
- W3107568488 cites W2611378646 @default.
- W3107568488 cites W2751237705 @default.
- W3107568488 cites W2765954684 @default.
- W3107568488 cites W2778295989 @default.
- W3107568488 cites W2800333317 @default.
- W3107568488 cites W2898795583 @default.
- W3107568488 cites W2913879678 @default.
- W3107568488 cites W2964463888 @default.
- W3107568488 cites W2968218138 @default.
- W3107568488 cites W3100528737 @default.
- W3107568488 doi "https://doi.org/10.1016/j.physe.2020.114533" @default.
- W3107568488 hasPublicationYear "2021" @default.
- W3107568488 type Work @default.
- W3107568488 sameAs 3107568488 @default.
- W3107568488 citedByCount "7" @default.
- W3107568488 countsByYear W31075684882021 @default.
- W3107568488 countsByYear W31075684882022 @default.
- W3107568488 countsByYear W31075684882023 @default.
- W3107568488 crossrefType "journal-article" @default.
- W3107568488 hasAuthorship W3107568488A5028012008 @default.
- W3107568488 hasAuthorship W3107568488A5077988657 @default.
- W3107568488 hasConcept C147789679 @default.
- W3107568488 hasConcept C150394285 @default.
- W3107568488 hasConcept C171250308 @default.
- W3107568488 hasConcept C178790620 @default.
- W3107568488 hasConcept C185592680 @default.
- W3107568488 hasConcept C192562407 @default.
- W3107568488 hasConcept C32909587 @default.
- W3107568488 hasConceptScore W3107568488C147789679 @default.
- W3107568488 hasConceptScore W3107568488C150394285 @default.
- W3107568488 hasConceptScore W3107568488C171250308 @default.
- W3107568488 hasConceptScore W3107568488C178790620 @default.
- W3107568488 hasConceptScore W3107568488C185592680 @default.
- W3107568488 hasConceptScore W3107568488C192562407 @default.
- W3107568488 hasConceptScore W3107568488C32909587 @default.
- W3107568488 hasLocation W31075684881 @default.
- W3107568488 hasOpenAccess W3107568488 @default.
- W3107568488 hasPrimaryLocation W31075684881 @default.
- W3107568488 hasRelatedWork W2006171070 @default.
- W3107568488 hasRelatedWork W2007936951 @default.
- W3107568488 hasRelatedWork W2033646705 @default.
- W3107568488 hasRelatedWork W2073580649 @default.
- W3107568488 hasRelatedWork W2162704323 @default.
- W3107568488 hasRelatedWork W2333587969 @default.
- W3107568488 hasRelatedWork W2783237598 @default.
- W3107568488 hasRelatedWork W2801128656 @default.
- W3107568488 hasRelatedWork W2960871870 @default.
- W3107568488 hasRelatedWork W3194411010 @default.
- W3107568488 hasVolume "127" @default.
- W3107568488 isParatext "false" @default.
- W3107568488 isRetracted "false" @default.
- W3107568488 magId "3107568488" @default.
- W3107568488 workType "article" @default.