Matches in SemOpenAlex for { <https://semopenalex.org/work/W2322392357> ?p ?o ?g. }
- W2322392357 endingPage "469" @default.
- W2322392357 startingPage "459" @default.
- W2322392357 abstract "Colloidal metal-organic frameworks (CMOFs), nanoporous colloidal-sized crystals that are uniform in both size and polyhedral shape, are crystals composed of metal ions and organic bridging ligands, which can be used as building blocks for self-assembly in organic and aqueous liquids. They stand in contrast to conventional metal-organic frameworks (MOFs), which scientists normally study in the form of bulk crystalline powders. However, powder MOFs generally have random crystal size and shape and therefore do not possess either a definite mutual arrangement with adjacent particles or uniformity. CMOFs do have this quality, which can be important in vital uptake and release kinetics. In this Account, we present the diverse methods of synthesis, pore chemistry control, surface modification, and assembly techniques of CMOFs. In addition, we survey recent achievements and future applications in this emerging field. There is potential for a paradigm shift, away from using just bulk crystalline powders, towards using particles whose size and shape are regulated. The concept of colloidal MOFs takes into account that nanoporous MOFs, conventionally prepared in the form of bulk crystalline powders with random crystal size, shape, and orientation, may also form colloidal-sized objects with uniform size and morphology. Furthermore, the traditional MOF functions that depend on porosity present additional control over those MOF functions that depend on pore interactions. They also can enable controlled spatial arrangements between neighboring particles. To begin, we discuss progress regarding synthesis of MOF nano- and microcrystals whose crystal size and shape are well regulated. Next, we review the methods to modify the surfaces with dye molecules and polymers. Dyes are useful when seeking to observe nonluminescent CMOFs in situ by optical microscopy, while polymers are useful to tune their interparticle interactions. Third, we discuss criteria to assess the stability of CMOFs for various applications. In another section of this Account, we give examples of supracrystal assembly in liquid, on substrates, at interfaces, and under external electric fields. We end this Account with discussion of possible future developments, both conceptual and technological." @default.
- W2322392357 created "2016-06-24" @default.
- W2322392357 creator A5013223554 @default.
- W2322392357 creator A5024285539 @default.
- W2322392357 creator A5036211385 @default.
- W2322392357 creator A5086447072 @default.
- W2322392357 date "2013-12-12" @default.
- W2322392357 modified "2023-09-30" @default.
- W2322392357 title "Colloidal-Sized Metal–Organic Frameworks: Synthesis and Applications" @default.
- W2322392357 cites W1966636142 @default.
- W2322392357 cites W1967551950 @default.
- W2322392357 cites W1975067765 @default.
- W2322392357 cites W1976463363 @default.
- W2322392357 cites W1986238480 @default.
- W2322392357 cites W1986325765 @default.
- W2322392357 cites W1992394013 @default.
- W2322392357 cites W1999908724 @default.
- W2322392357 cites W1999937609 @default.
- W2322392357 cites W2002449355 @default.
- W2322392357 cites W2002799357 @default.
- W2322392357 cites W2004550299 @default.
- W2322392357 cites W2005154776 @default.
- W2322392357 cites W2005533286 @default.
- W2322392357 cites W2006030639 @default.
- W2322392357 cites W2007053210 @default.
- W2322392357 cites W2027834131 @default.
- W2322392357 cites W2029295579 @default.
- W2322392357 cites W2029461239 @default.
- W2322392357 cites W2042368065 @default.
- W2322392357 cites W2053027138 @default.
- W2322392357 cites W2060604247 @default.
- W2322392357 cites W2060968172 @default.
- W2322392357 cites W2061584703 @default.
- W2322392357 cites W2065282169 @default.
- W2322392357 cites W2073921074 @default.
- W2322392357 cites W2076756203 @default.
- W2322392357 cites W2078077916 @default.
- W2322392357 cites W2078678890 @default.
- W2322392357 cites W2090426702 @default.
- W2322392357 cites W2091161882 @default.
- W2322392357 cites W2094145140 @default.
- W2322392357 cites W2127870378 @default.
- W2322392357 cites W2133699671 @default.
- W2322392357 cites W2139482086 @default.
- W2322392357 cites W2141878584 @default.
- W2322392357 cites W2151985601 @default.
- W2322392357 cites W2152495917 @default.
- W2322392357 cites W2163853955 @default.
- W2322392357 cites W2167367493 @default.
- W2322392357 cites W2169899684 @default.
- W2322392357 cites W2315956629 @default.
- W2322392357 cites W2317410011 @default.
- W2322392357 cites W2321316383 @default.
- W2322392357 cites W2321937578 @default.
- W2322392357 cites W2322759533 @default.
- W2322392357 cites W2329180172 @default.
- W2322392357 cites W2331586132 @default.
- W2322392357 cites W2858547974 @default.
- W2322392357 doi "https://doi.org/10.1021/ar400151n" @default.
- W2322392357 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/24328052" @default.
- W2322392357 hasPublicationYear "2013" @default.
- W2322392357 type Work @default.
- W2322392357 sameAs 2322392357 @default.
- W2322392357 citedByCount "282" @default.
- W2322392357 countsByYear W23223923572014 @default.
- W2322392357 countsByYear W23223923572015 @default.
- W2322392357 countsByYear W23223923572016 @default.
- W2322392357 countsByYear W23223923572017 @default.
- W2322392357 countsByYear W23223923572018 @default.
- W2322392357 countsByYear W23223923572019 @default.
- W2322392357 countsByYear W23223923572020 @default.
- W2322392357 countsByYear W23223923572021 @default.
- W2322392357 countsByYear W23223923572022 @default.
- W2322392357 countsByYear W23223923572023 @default.
- W2322392357 crossrefType "journal-article" @default.
- W2322392357 hasAuthorship W2322392357A5013223554 @default.
- W2322392357 hasAuthorship W2322392357A5024285539 @default.
- W2322392357 hasAuthorship W2322392357A5036211385 @default.
- W2322392357 hasAuthorship W2322392357A5086447072 @default.
- W2322392357 hasConcept C125574357 @default.
- W2322392357 hasConcept C127413603 @default.
- W2322392357 hasConcept C150394285 @default.
- W2322392357 hasConcept C159467904 @default.
- W2322392357 hasConcept C159985019 @default.
- W2322392357 hasConcept C171250308 @default.
- W2322392357 hasConcept C178790620 @default.
- W2322392357 hasConcept C179366358 @default.
- W2322392357 hasConcept C185592680 @default.
- W2322392357 hasConcept C191897082 @default.
- W2322392357 hasConcept C192562407 @default.
- W2322392357 hasConcept C199360897 @default.
- W2322392357 hasConcept C2781285689 @default.
- W2322392357 hasConcept C41008148 @default.
- W2322392357 hasConcept C42360764 @default.
- W2322392357 hasConcept C48940184 @default.
- W2322392357 hasConcept C544153396 @default.
- W2322392357 hasConcept C59789625 @default.
- W2322392357 hasConcept C6648577 @default.