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Pregled bibliografske jedinice broj: 1254202

Mechanochemistry for clean and rapid synthesis and transformation of functional MOFs


Užarević, Krunoslav; Karadeniz, Bahar; Martinez, Valentina; Brekalo, Ivana; Stolar, Tomislav
Mechanochemistry for clean and rapid synthesis and transformation of functional MOFs // 8th International Conference on Metal-Organic Frameworks and Open Framework Compounds
Dresden, Njemačka, 2022. (poster, recenziran, neobjavljeni rad, znanstveni)


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Naslov
Mechanochemistry for clean and rapid synthesis and transformation of functional MOFs

Autori
Užarević, Krunoslav ; Karadeniz, Bahar ; Martinez, Valentina ; Brekalo, Ivana ; Stolar, Tomislav

Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, neobjavljeni rad, znanstveni

Skup
8th International Conference on Metal-Organic Frameworks and Open Framework Compounds

Mjesto i datum
Dresden, Njemačka, 04.09.2022. - 07.09.2022

Vrsta sudjelovanja
Poster

Vrsta recenzije
Recenziran

Ključne riječi
Chemical reactivity ; mechanochemistry ; MOF materials ; amorhization ; multimetallic MOFs

Sažetak
Here we present how mechanochemical reactions, i.e. reactions between solid reactants induced by mechanical force, can be used for a rapid, sustainable, and controllable transformation of environmentally safe precursors into relevant MOFs, [1] such as MOF-74[2] or zirconium MOFs of UiO, [3] NU- [4], and PCN-[5] families. Direct monitoring by synchrotron powder X-ray diffraction revealed that the mechanochemical formation of MOFs often proceeds through intermediate phases, most of which are inaccessible from solution procedures. It is possible to isolate and use these intermediates for the templated synthesis of non-conventional MOFs, such as various bimetallic MOF-74 materials[6] or MOF amorphs with interesting magnetic properties and strong potential for new catalytic reactivity.[7] Besides their multi-metal and amorphous derivatives, mechanochemical methods can be used for the controllable introduction of other functional nano-guests in the voids of the MOF by using only a catalytic amount of liquids, [8] thus providing access to MOF hybrids for different purposes.

Izvorni jezik
Engleski

Znanstvena područja
Kemija



POVEZANOST RADA


Projekti:
HRZZ-PZS-2019-02-4129 - Mehanokemijske i bezotopinske strategije za sintezu funkcionalnih poroznih materijala s naprednim fizičko-kemijskim i katalitičkim svojstvima (MECHADVANCE) (Užarević, Krunoslav, HRZZ - 2019-02) ( CroRIS)

Ustanove:
Institut "Ruđer Bošković", Zagreb

Poveznice na cjeloviti tekst rada:

dechema.de dechema.de

Citiraj ovu publikaciju:

Užarević, Krunoslav; Karadeniz, Bahar; Martinez, Valentina; Brekalo, Ivana; Stolar, Tomislav
Mechanochemistry for clean and rapid synthesis and transformation of functional MOFs // 8th International Conference on Metal-Organic Frameworks and Open Framework Compounds
Dresden, Njemačka, 2022. (poster, recenziran, neobjavljeni rad, znanstveni)
Užarević, K., Karadeniz, B., Martinez, V., Brekalo, I. & Stolar, T. (2022) Mechanochemistry for clean and rapid synthesis and transformation of functional MOFs. U: 8th International Conference on Metal-Organic Frameworks and Open Framework Compounds.
@article{article, author = {U\v{z}arevi\'{c}, Krunoslav and Karadeniz, Bahar and Martinez, Valentina and Brekalo, Ivana and Stolar, Tomislav}, year = {2022}, keywords = {Chemical reactivity, mechanochemistry, MOF materials, amorhization, multimetallic MOFs}, title = {Mechanochemistry for clean and rapid synthesis and transformation of functional MOFs}, keyword = {Chemical reactivity, mechanochemistry, MOF materials, amorhization, multimetallic MOFs}, publisherplace = {Dresden, Njema\v{c}ka} }
@article{article, author = {U\v{z}arevi\'{c}, Krunoslav and Karadeniz, Bahar and Martinez, Valentina and Brekalo, Ivana and Stolar, Tomislav}, year = {2022}, keywords = {Chemical reactivity, mechanochemistry, MOF materials, amorhization, multimetallic MOFs}, title = {Mechanochemistry for clean and rapid synthesis and transformation of functional MOFs}, keyword = {Chemical reactivity, mechanochemistry, MOF materials, amorhization, multimetallic MOFs}, publisherplace = {Dresden, Njema\v{c}ka} }




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