Matches in SemOpenAlex for { <https://semopenalex.org/work/W3163738557> ?p ?o ?g. }
- W3163738557 endingPage "10159" @default.
- W3163738557 startingPage "10151" @default.
- W3163738557 abstract "Porphyrinic metal-organic frameworks (MOFs) are promising photosensitizers due to the lack of self-aggregation of porphyrin in aqueous solution. However, how the topology of porphyrinic MOFs affects the generation of singlet oxygen (1O2) is unclear. Here, the effect of the topology of porphyrinic MOFs on their photodynamic performance is reported. Four porphyrinic zirconium MOFs (MOF-525, MOF-545, PCN-223 and PCN-224 with different topologies: ftw, csq, shp and she, respectively) were selected to study the influence of topology on the photodynamic antibacterial performance. The 1O2 generation and the photodynamic antibacterial performance followed an decreasing order of MOF-545>MOF-525>PCN-224>PCN-223. The results reveal that the pore size, the distance between porphyrin, and the number of porphyrin per Zr6O8 cluster in MOFs greatly affected 1O2 generation. This work provides guidance for designing new MOFs for efficient photodynamic sterilization." @default.
- W3163738557 created "2021-05-24" @default.
- W3163738557 creator A5015063473 @default.
- W3163738557 creator A5049967413 @default.
- W3163738557 creator A5057585686 @default.
- W3163738557 creator A5090486781 @default.
- W3163738557 date "2021-06-04" @default.
- W3163738557 modified "2023-10-16" @default.
- W3163738557 title "Effect of Topology on Photodynamic Sterilization of Porphyrinic Metal‐Organic Frameworks" @default.
- W3163738557 cites W1824544977 @default.
- W3163738557 cites W1906394725 @default.
- W3163738557 cites W1967812076 @default.
- W3163738557 cites W2023978788 @default.
- W3163738557 cites W2042138520 @default.
- W3163738557 cites W2063496385 @default.
- W3163738557 cites W2069537362 @default.
- W3163738557 cites W2076121330 @default.
- W3163738557 cites W2078122806 @default.
- W3163738557 cites W2079808548 @default.
- W3163738557 cites W2105631122 @default.
- W3163738557 cites W2140002836 @default.
- W3163738557 cites W2155579681 @default.
- W3163738557 cites W2159614193 @default.
- W3163738557 cites W2164434425 @default.
- W3163738557 cites W2171985752 @default.
- W3163738557 cites W2279490582 @default.
- W3163738557 cites W2283564633 @default.
- W3163738557 cites W2297279974 @default.
- W3163738557 cites W2345314011 @default.
- W3163738557 cites W2418613960 @default.
- W3163738557 cites W2475022942 @default.
- W3163738557 cites W2528943651 @default.
- W3163738557 cites W2531287549 @default.
- W3163738557 cites W2532884284 @default.
- W3163738557 cites W2585315127 @default.
- W3163738557 cites W2594479214 @default.
- W3163738557 cites W2659481294 @default.
- W3163738557 cites W2733683283 @default.
- W3163738557 cites W2737676742 @default.
- W3163738557 cites W2766207559 @default.
- W3163738557 cites W2767312980 @default.
- W3163738557 cites W2787909461 @default.
- W3163738557 cites W2790057497 @default.
- W3163738557 cites W2790308498 @default.
- W3163738557 cites W2795424152 @default.
- W3163738557 cites W2800147280 @default.
- W3163738557 cites W2834336818 @default.
- W3163738557 cites W2889408874 @default.
- W3163738557 cites W2913007715 @default.
- W3163738557 cites W2914399070 @default.
- W3163738557 cites W2954110626 @default.
- W3163738557 cites W3001588564 @default.
- W3163738557 cites W3002432126 @default.
- W3163738557 cites W3091834462 @default.
- W3163738557 cites W3110343229 @default.
- W3163738557 cites W4233419154 @default.
- W3163738557 cites W4242401348 @default.
- W3163738557 cites W754810295 @default.
- W3163738557 doi "https://doi.org/10.1002/chem.202100920" @default.
- W3163738557 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/33978976" @default.
- W3163738557 hasPublicationYear "2021" @default.
- W3163738557 type Work @default.
- W3163738557 sameAs 3163738557 @default.
- W3163738557 citedByCount "23" @default.
- W3163738557 countsByYear W31637385572021 @default.
- W3163738557 countsByYear W31637385572022 @default.
- W3163738557 countsByYear W31637385572023 @default.
- W3163738557 crossrefType "journal-article" @default.
- W3163738557 hasAuthorship W3163738557A5015063473 @default.
- W3163738557 hasAuthorship W3163738557A5049967413 @default.
- W3163738557 hasAuthorship W3163738557A5057585686 @default.
- W3163738557 hasAuthorship W3163738557A5090486781 @default.
- W3163738557 hasConcept C119599485 @default.
- W3163738557 hasConcept C127413603 @default.
- W3163738557 hasConcept C138885662 @default.
- W3163738557 hasConcept C141121606 @default.
- W3163738557 hasConcept C148761745 @default.
- W3163738557 hasConcept C150394285 @default.
- W3163738557 hasConcept C178790620 @default.
- W3163738557 hasConcept C179366358 @default.
- W3163738557 hasConcept C184720557 @default.
- W3163738557 hasConcept C185592680 @default.
- W3163738557 hasConcept C2781323092 @default.
- W3163738557 hasConcept C41895202 @default.
- W3163738557 hasConcept C536366893 @default.
- W3163738557 hasConceptScore W3163738557C119599485 @default.
- W3163738557 hasConceptScore W3163738557C127413603 @default.
- W3163738557 hasConceptScore W3163738557C138885662 @default.
- W3163738557 hasConceptScore W3163738557C141121606 @default.
- W3163738557 hasConceptScore W3163738557C148761745 @default.
- W3163738557 hasConceptScore W3163738557C150394285 @default.
- W3163738557 hasConceptScore W3163738557C178790620 @default.
- W3163738557 hasConceptScore W3163738557C179366358 @default.
- W3163738557 hasConceptScore W3163738557C184720557 @default.
- W3163738557 hasConceptScore W3163738557C185592680 @default.
- W3163738557 hasConceptScore W3163738557C2781323092 @default.
- W3163738557 hasConceptScore W3163738557C41895202 @default.
- W3163738557 hasConceptScore W3163738557C536366893 @default.