Postsynthetic modification (PSM) has been exploited for the preparation of two novel N3-decorated MOFs, namely, UMCM-1-N3[Zn4O(N3tpa)(btb)4/3; N3tpa2- = 2-azidoterephthalate; btb3- = 4,4?,4?-benzene-1,3,5-triyltribenzoate] and MIXMOF-5-N3[Zn4O(N3tpa)0.4(tpa)2.6; tpa2- = terephthalate], featured by both different azido functional group content and crystalline structure. Subsequently, the as-synthesized materials were further transformed through an efficient and versatile approach capable of imparting multimodality to these porous organic-inorganic polymers. Cu-mediated acetylene-azide coupling (CuAAC; "click" reaction) has been performed in a single step, under optimized conditions, with complete azido -> triazole conversion using either single acetylene derivatives or mixtures of reactive terminal alkynes in variable molar fractions to give homo- and heteroderivatized MOFs. An accurate control of the relative percentages of the functional groups in the final heterofunctionalized materials is conveniently achieved through a fine-tuning of the starting acetylene mixtures molar ratio. All MOFs derivatives have been characterized through thermogravimetric analysis coupled with MS analysis of volatiles (TG-MS), powder X-ray diffaction(PXRD), FT-IR spectroscopy, and 1H NMR spectroscopy of the digested functionalized samples. Fluorescence studies on properly labeled (dye-functionalized) MOFs have been used for the first time to assess the statistical distribution of the "reactive probe" throughout the bulk material.

"Click" on MOFs: a Versatile Tool for the Multimodal Derivatization of N3-decorated Metal Organic Frameworks

Tuci Giulia;Rossin Andrea;Luconi Lapo;Manet Ilse;Melucci Manuela;Giambastiani Giuliano
2013

Abstract

Postsynthetic modification (PSM) has been exploited for the preparation of two novel N3-decorated MOFs, namely, UMCM-1-N3[Zn4O(N3tpa)(btb)4/3; N3tpa2- = 2-azidoterephthalate; btb3- = 4,4?,4?-benzene-1,3,5-triyltribenzoate] and MIXMOF-5-N3[Zn4O(N3tpa)0.4(tpa)2.6; tpa2- = terephthalate], featured by both different azido functional group content and crystalline structure. Subsequently, the as-synthesized materials were further transformed through an efficient and versatile approach capable of imparting multimodality to these porous organic-inorganic polymers. Cu-mediated acetylene-azide coupling (CuAAC; "click" reaction) has been performed in a single step, under optimized conditions, with complete azido -> triazole conversion using either single acetylene derivatives or mixtures of reactive terminal alkynes in variable molar fractions to give homo- and heteroderivatized MOFs. An accurate control of the relative percentages of the functional groups in the final heterofunctionalized materials is conveniently achieved through a fine-tuning of the starting acetylene mixtures molar ratio. All MOFs derivatives have been characterized through thermogravimetric analysis coupled with MS analysis of volatiles (TG-MS), powder X-ray diffaction(PXRD), FT-IR spectroscopy, and 1H NMR spectroscopy of the digested functionalized samples. Fluorescence studies on properly labeled (dye-functionalized) MOFs have been used for the first time to assess the statistical distribution of the "reactive probe" throughout the bulk material.
2013
Istituto di Chimica dei Composti OrganoMetallici - ICCOM -
Istituto per la Sintesi Organica e la Fotoreattivita' - ISOF
metal-organic framework (MOF)
click chemistry
postsynthetic modification (PSM)
multifunctional materials
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/129285
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 50
  • ???jsp.display-item.citation.isi??? ND
social impact