Matches in SemOpenAlex for { <https://semopenalex.org/work/W2767743485> ?p ?o ?g. }
- W2767743485 endingPage "5602" @default.
- W2767743485 startingPage "5596" @default.
- W2767743485 abstract "Two-dimensional (2D) metal–organic frameworks (MOFs) have been recently proposed as a flexible material platform for realizing exotic quantum phases including topological and anomalous quantum Hall insulators. Experimentally, direct synthesis of 2D MOFs has been essentially confined to metal substrates, where the strong interaction with the substrate masks the intrinsic electronic properties of the MOF. In addition to electronic decoupling from the underlying metal support, synthesis on weakly interacting substrates (e.g., graphene) would enable direct realization of heterostructures of 2D MOFs with inorganic 2D materials. Here, we demonstrate synthesis of 2D honeycomb MOFs on epitaxial graphene substrate. Using low-temperature scanning tunneling microscopy (STM) and atomic force microscopy (AFM) complemented by density-functional theory (DFT) calculations, we show the formation of a 2D band structure in the MOF decoupled from the substrate. These results open the experimental path toward MOF-based designer electronic materials with complex, engineered electronic structures." @default.
- W2767743485 created "2017-11-17" @default.
- W2767743485 creator A5002229288 @default.
- W2767743485 creator A5030321890 @default.
- W2767743485 creator A5034314528 @default.
- W2767743485 creator A5068676539 @default.
- W2767743485 date "2018-08-22" @default.
- W2767743485 modified "2023-10-17" @default.
- W2767743485 title "Two-Dimensional Band Structure in Honeycomb Metal–Organic Frameworks" @default.
- W2767743485 cites W1531047539 @default.
- W2767743485 cites W1964084591 @default.
- W2767743485 cites W1967445304 @default.
- W2767743485 cites W1975281853 @default.
- W2767743485 cites W1978432034 @default.
- W2767743485 cites W1980138378 @default.
- W2767743485 cites W1981984375 @default.
- W2767743485 cites W2002799357 @default.
- W2767743485 cites W2003729611 @default.
- W2767743485 cites W2007988830 @default.
- W2767743485 cites W2014489189 @default.
- W2767743485 cites W2016561531 @default.
- W2767743485 cites W2023150460 @default.
- W2767743485 cites W2036855965 @default.
- W2767743485 cites W2042260160 @default.
- W2767743485 cites W2045956534 @default.
- W2767743485 cites W2047970860 @default.
- W2767743485 cites W2049694692 @default.
- W2767743485 cites W2051099219 @default.
- W2767743485 cites W2069488651 @default.
- W2767743485 cites W2072972451 @default.
- W2767743485 cites W2080500375 @default.
- W2767743485 cites W2086687715 @default.
- W2767743485 cites W2093710037 @default.
- W2767743485 cites W2118468137 @default.
- W2767743485 cites W2147592303 @default.
- W2767743485 cites W2151679217 @default.
- W2767743485 cites W2153418834 @default.
- W2767743485 cites W2153655305 @default.
- W2767743485 cites W2312824412 @default.
- W2767743485 cites W2313420717 @default.
- W2767743485 cites W2314994431 @default.
- W2767743485 cites W2315416777 @default.
- W2767743485 cites W2316777255 @default.
- W2767743485 cites W2319824389 @default.
- W2767743485 cites W2325351947 @default.
- W2767743485 cites W2329816201 @default.
- W2767743485 cites W2411615415 @default.
- W2767743485 cites W2426214760 @default.
- W2767743485 cites W2511412223 @default.
- W2767743485 cites W2577611789 @default.
- W2767743485 cites W2594238106 @default.
- W2767743485 cites W2605981191 @default.
- W2767743485 cites W2607039140 @default.
- W2767743485 cites W2607696331 @default.
- W2767743485 cites W2611198903 @default.
- W2767743485 cites W2618127528 @default.
- W2767743485 cites W2619300082 @default.
- W2767743485 cites W2621605813 @default.
- W2767743485 cites W2638974840 @default.
- W2767743485 cites W2754609875 @default.
- W2767743485 cites W2762679687 @default.
- W2767743485 cites W2766063749 @default.
- W2767743485 cites W2884323194 @default.
- W2767743485 cites W3101943768 @default.
- W2767743485 cites W995000768 @default.
- W2767743485 doi "https://doi.org/10.1021/acs.nanolett.8b02062" @default.
- W2767743485 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/6179349" @default.
- W2767743485 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30134111" @default.
- W2767743485 hasPublicationYear "2018" @default.
- W2767743485 type Work @default.
- W2767743485 sameAs 2767743485 @default.
- W2767743485 citedByCount "62" @default.
- W2767743485 countsByYear W27677434852018 @default.
- W2767743485 countsByYear W27677434852019 @default.
- W2767743485 countsByYear W27677434852020 @default.
- W2767743485 countsByYear W27677434852021 @default.
- W2767743485 countsByYear W27677434852022 @default.
- W2767743485 countsByYear W27677434852023 @default.
- W2767743485 crossrefType "journal-article" @default.
- W2767743485 hasAuthorship W2767743485A5002229288 @default.
- W2767743485 hasAuthorship W2767743485A5030321890 @default.
- W2767743485 hasAuthorship W2767743485A5034314528 @default.
- W2767743485 hasAuthorship W2767743485A5068676539 @default.
- W2767743485 hasBestOaLocation W27677434851 @default.
- W2767743485 hasConcept C111368507 @default.
- W2767743485 hasConcept C121332964 @default.
- W2767743485 hasConcept C125469278 @default.
- W2767743485 hasConcept C127313418 @default.
- W2767743485 hasConcept C128911142 @default.
- W2767743485 hasConcept C145665481 @default.
- W2767743485 hasConcept C147597530 @default.
- W2767743485 hasConcept C150394285 @default.
- W2767743485 hasConcept C152365726 @default.
- W2767743485 hasConcept C159467904 @default.
- W2767743485 hasConcept C159985019 @default.
- W2767743485 hasConcept C171250308 @default.
- W2767743485 hasConcept C171736797 @default.
- W2767743485 hasConcept C178790620 @default.