Matches in SemOpenAlex for { <https://semopenalex.org/work/W1991433600> ?p ?o ?g. }
- W1991433600 endingPage "673" @default.
- W1991433600 startingPage "662" @default.
- W1991433600 abstract "The response of pristine, nitrogen and boron doped carbon nanotube (CNT) sensors to NO2, CO, C2H4 and H2O at ppm concentrations was investigated at both room temperature and 150 °C. N-doped CNTs show the best sensitivity to nitrogen dioxide and carbon monoxide, while B-doped CNTs show the best sensitivity to ethylene. All tubes (including undoped) show strong humidity response. Sensing mechanisms are determined via comparison with density functional calculations of gas molecule absorption onto representative defect structures in N and B-doped graphene. N-CNTs show decreased sensitivity with temperature, and detection appears to occur via gas physisorption. B-CNTs appear to react chemically with many of the absorbed species as shown by their poor baseline recovery and increasing sensitivity with temperature. This limits their cyclability. Overall gas sensitivity is as good or better than post-growth functionalised nanotubes, and used in combination, CNTs, N-CNTs and B-CNTs appear highly promising candidates for cheap, low power, room temperature gas sensing applications." @default.
- W1991433600 created "2016-06-24" @default.
- W1991433600 creator A5007397820 @default.
- W1991433600 creator A5009719625 @default.
- W1991433600 creator A5014673952 @default.
- W1991433600 creator A5019654495 @default.
- W1991433600 creator A5032791705 @default.
- W1991433600 creator A5035671630 @default.
- W1991433600 creator A5058438849 @default.
- W1991433600 creator A5059776272 @default.
- W1991433600 creator A5064260162 @default.
- W1991433600 date "2014-01-01" @default.
- W1991433600 modified "2023-10-18" @default.
- W1991433600 title "Boron- and nitrogen-doped multi-wall carbon nanotubes for gas detection" @default.
- W1991433600 cites W1968101292 @default.
- W1991433600 cites W1968485360 @default.
- W1991433600 cites W1975640946 @default.
- W1991433600 cites W1977750593 @default.
- W1991433600 cites W1978443121 @default.
- W1991433600 cites W1982952953 @default.
- W1991433600 cites W1983463040 @default.
- W1991433600 cites W1989036786 @default.
- W1991433600 cites W1989494065 @default.
- W1991433600 cites W1999794301 @default.
- W1991433600 cites W2001193108 @default.
- W1991433600 cites W2008715616 @default.
- W1991433600 cites W2011022767 @default.
- W1991433600 cites W2016000718 @default.
- W1991433600 cites W2018570325 @default.
- W1991433600 cites W2019606465 @default.
- W1991433600 cites W2026591873 @default.
- W1991433600 cites W2026924684 @default.
- W1991433600 cites W2027782584 @default.
- W1991433600 cites W2038587886 @default.
- W1991433600 cites W2044769206 @default.
- W1991433600 cites W2045697879 @default.
- W1991433600 cites W2045720688 @default.
- W1991433600 cites W2046557642 @default.
- W1991433600 cites W2050786944 @default.
- W1991433600 cites W2050890510 @default.
- W1991433600 cites W2052331946 @default.
- W1991433600 cites W2057378193 @default.
- W1991433600 cites W2060139435 @default.
- W1991433600 cites W2064496568 @default.
- W1991433600 cites W2068013440 @default.
- W1991433600 cites W2080163583 @default.
- W1991433600 cites W2080239299 @default.
- W1991433600 cites W2081223557 @default.
- W1991433600 cites W2081968045 @default.
- W1991433600 cites W2084377018 @default.
- W1991433600 cites W2093676214 @default.
- W1991433600 cites W2095459549 @default.
- W1991433600 cites W2101515424 @default.
- W1991433600 cites W2104743260 @default.
- W1991433600 cites W2158861167 @default.
- W1991433600 cites W2159382347 @default.
- W1991433600 cites W2325150350 @default.
- W1991433600 cites W2325335784 @default.
- W1991433600 cites W2326971056 @default.
- W1991433600 cites W2335347190 @default.
- W1991433600 doi "https://doi.org/10.1016/j.carbon.2013.09.064" @default.
- W1991433600 hasPublicationYear "2014" @default.
- W1991433600 type Work @default.
- W1991433600 sameAs 1991433600 @default.
- W1991433600 citedByCount "133" @default.
- W1991433600 countsByYear W19914336002014 @default.
- W1991433600 countsByYear W19914336002015 @default.
- W1991433600 countsByYear W19914336002016 @default.
- W1991433600 countsByYear W19914336002017 @default.
- W1991433600 countsByYear W19914336002018 @default.
- W1991433600 countsByYear W19914336002019 @default.
- W1991433600 countsByYear W19914336002020 @default.
- W1991433600 countsByYear W19914336002021 @default.
- W1991433600 countsByYear W19914336002022 @default.
- W1991433600 countsByYear W19914336002023 @default.
- W1991433600 crossrefType "journal-article" @default.
- W1991433600 hasAuthorship W1991433600A5007397820 @default.
- W1991433600 hasAuthorship W1991433600A5009719625 @default.
- W1991433600 hasAuthorship W1991433600A5014673952 @default.
- W1991433600 hasAuthorship W1991433600A5019654495 @default.
- W1991433600 hasAuthorship W1991433600A5032791705 @default.
- W1991433600 hasAuthorship W1991433600A5035671630 @default.
- W1991433600 hasAuthorship W1991433600A5058438849 @default.
- W1991433600 hasAuthorship W1991433600A5059776272 @default.
- W1991433600 hasAuthorship W1991433600A5064260162 @default.
- W1991433600 hasConcept C104779481 @default.
- W1991433600 hasConcept C125287762 @default.
- W1991433600 hasConcept C127413603 @default.
- W1991433600 hasConcept C140205800 @default.
- W1991433600 hasConcept C150394285 @default.
- W1991433600 hasConcept C159985019 @default.
- W1991433600 hasConcept C161790260 @default.
- W1991433600 hasConcept C171250308 @default.
- W1991433600 hasConcept C178790620 @default.
- W1991433600 hasConcept C185592680 @default.
- W1991433600 hasConcept C192562407 @default.
- W1991433600 hasConcept C2780050857 @default.
- W1991433600 hasConcept C30080830 @default.