Matches in SemOpenAlex for { <https://semopenalex.org/work/W1995303463> ?p ?o ?g. }
- W1995303463 endingPage "1660" @default.
- W1995303463 startingPage "1648" @default.
- W1995303463 abstract "The spatial structure of compressed carbon monoxide adlayers on Pt(111) in aqueous acidic solution has been explored by means of in-situ scanning tunneling microscopy (STM) along with infrared reflection–absorption spectroscopy (IRAS). Besides offering a detailed structural picture of this electrochemical interface in comparison with the well-studied Pt(111)/CO system in ultrahigh vacuum (uhv) environments, the real-space structural information provided by STM allows an assessment of the obfuscating influence of dynamic dipole coupling upon IRAS binding-site assignments. In turn, the latter data provide an important crosscheck on the validity of binding-site assignments deduced from the STM images. Emphasis is placed on the structures formed from near-saturated CO solutions, encouraged by the electrode potential-induced adlayer phase transition at ca. 0 V vs SCE observed previously under these conditions by IRAS. At potentials below 0 V, a hexagonal close-packed (2×2)–3CO adlayer is observed, with a CO coverage, θCO, of 0.75. The z-corrugation pattern evident in the STM images indicates the presence of two threefold hollow and one atop CO per unit cell. This binding-site assignment is supported by the corresponding IRAS data which yield C–O vibrational bands at ca. 2065 and 1775 cm−1. The relative intensities of these two νCO bands, ca. 2:1, differs markedly from the 1:2 binding site occupancy deduced from STM. This apparent disparity, however, can be accounted for by dynamic dipole coupling effects between the atop and multifold CO oscillators. At potentials above 0 V (up to the onset of CO electrooxidation at ca. 0.25 V), a markedly different adlayer arrangement is formed, having a (√19×√19)R23.4°–13CO unit cell, with θCO=13/19. This hexagonal structure features CO binding in predominantly asymmetric sites inbetween atop and bridging geometries. A distinction between several alternate adlayer arrangements sharing (√19×√19) symmetry was achieved on the basis of the z-corrugation pattern along with the corresponding IRAS data upon consideration of dipole-coupling effects. Another CO adlayer structure, having a (√7×√7)R19.1°-4CO unit cell (θCO=4/7), was commonly observed at potentials below 0.2 V after the removal of solution-phase CO. These adlayer arrangements are distinctly different to the compressed Pt(111)/CO structures found in uhv. The increased accommodation of CO in multifold sites observed for the former can be understood chiefly from the markedly (ca. 1 V) lower surface potentials (and excess electronic surface charges) characterizing the electrochemical interface." @default.
- W1995303463 created "2016-06-24" @default.
- W1995303463 creator A5047318269 @default.
- W1995303463 creator A5050604123 @default.
- W1995303463 date "1994-07-15" @default.
- W1995303463 modified "2023-10-06" @default.
- W1995303463 title "Carbon monoxide adlayer structures on platinum (111) electrodes: A synergy between <i>in-situ</i> scanning tunneling microscopy and infrared spectroscopy" @default.
- W1995303463 cites W156528766 @default.
- W1995303463 cites W1963996735 @default.
- W1995303463 cites W1973810562 @default.
- W1995303463 cites W1974530214 @default.
- W1995303463 cites W1975861265 @default.
- W1995303463 cites W1980175042 @default.
- W1995303463 cites W1994560329 @default.
- W1995303463 cites W1999971621 @default.
- W1995303463 cites W2000925073 @default.
- W1995303463 cites W2002925561 @default.
- W1995303463 cites W2005311427 @default.
- W1995303463 cites W2005893182 @default.
- W1995303463 cites W2008582441 @default.
- W1995303463 cites W2009779967 @default.
- W1995303463 cites W2012391663 @default.
- W1995303463 cites W2013827449 @default.
- W1995303463 cites W2020665965 @default.
- W1995303463 cites W2021934025 @default.
- W1995303463 cites W2022417515 @default.
- W1995303463 cites W2026839090 @default.
- W1995303463 cites W202764353 @default.
- W1995303463 cites W2027889788 @default.
- W1995303463 cites W2033014123 @default.
- W1995303463 cites W2034209357 @default.
- W1995303463 cites W2039005925 @default.
- W1995303463 cites W2039866670 @default.
- W1995303463 cites W2049349506 @default.
- W1995303463 cites W2053804008 @default.
- W1995303463 cites W2056742238 @default.
- W1995303463 cites W2063810780 @default.
- W1995303463 cites W2066644038 @default.
- W1995303463 cites W2072988514 @default.
- W1995303463 cites W2082485764 @default.
- W1995303463 cites W2083527345 @default.
- W1995303463 cites W2085314162 @default.
- W1995303463 cites W2087545671 @default.
- W1995303463 cites W2088312893 @default.
- W1995303463 cites W2091097253 @default.
- W1995303463 cites W2094698926 @default.
- W1995303463 cites W2179661101 @default.
- W1995303463 cites W2180539694 @default.
- W1995303463 cites W2476747383 @default.
- W1995303463 cites W2483443351 @default.
- W1995303463 cites W3111792324 @default.
- W1995303463 cites W3133327728 @default.
- W1995303463 cites W4243059215 @default.
- W1995303463 doi "https://doi.org/10.1063/1.467786" @default.
- W1995303463 hasPublicationYear "1994" @default.
- W1995303463 type Work @default.
- W1995303463 sameAs 1995303463 @default.
- W1995303463 citedByCount "382" @default.
- W1995303463 countsByYear W19953034632012 @default.
- W1995303463 countsByYear W19953034632013 @default.
- W1995303463 countsByYear W19953034632014 @default.
- W1995303463 countsByYear W19953034632015 @default.
- W1995303463 countsByYear W19953034632016 @default.
- W1995303463 countsByYear W19953034632017 @default.
- W1995303463 countsByYear W19953034632018 @default.
- W1995303463 countsByYear W19953034632019 @default.
- W1995303463 countsByYear W19953034632020 @default.
- W1995303463 countsByYear W19953034632021 @default.
- W1995303463 countsByYear W19953034632022 @default.
- W1995303463 countsByYear W19953034632023 @default.
- W1995303463 crossrefType "journal-article" @default.
- W1995303463 hasAuthorship W1995303463A5047318269 @default.
- W1995303463 hasAuthorship W1995303463A5050604123 @default.
- W1995303463 hasConcept C106773901 @default.
- W1995303463 hasConcept C113196181 @default.
- W1995303463 hasConcept C120665830 @default.
- W1995303463 hasConcept C121332964 @default.
- W1995303463 hasConcept C153642686 @default.
- W1995303463 hasConcept C158355884 @default.
- W1995303463 hasConcept C161790260 @default.
- W1995303463 hasConcept C171250308 @default.
- W1995303463 hasConcept C178790620 @default.
- W1995303463 hasConcept C185592680 @default.
- W1995303463 hasConcept C192562407 @default.
- W1995303463 hasConcept C32891209 @default.
- W1995303463 hasConcept C43617362 @default.
- W1995303463 hasConcept C512735826 @default.
- W1995303463 hasConcept C518104683 @default.
- W1995303463 hasConcept C55493867 @default.
- W1995303463 hasConcept C62520636 @default.
- W1995303463 hasConcept C6518042 @default.
- W1995303463 hasConcept C8010536 @default.
- W1995303463 hasConceptScore W1995303463C106773901 @default.
- W1995303463 hasConceptScore W1995303463C113196181 @default.
- W1995303463 hasConceptScore W1995303463C120665830 @default.
- W1995303463 hasConceptScore W1995303463C121332964 @default.
- W1995303463 hasConceptScore W1995303463C153642686 @default.
- W1995303463 hasConceptScore W1995303463C158355884 @default.