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SUMMARY:Metal Organic Frameworks as precursors for the manufacture of adva
 nced catalytic materials
DTSTART:20180524T103000
DTEND:20180524T113000
DTSTAMP:20260922T015628Z
UID:e228a6fbf7903dcddb38fce002931e3e7bdc97b273820df407ac29be
CATEGORIES:Conferences - Seminars
DESCRIPTION:Prof. Jorge Gascon\nKing Abdullah University of Science and Te
 chnology\,\nKAUST Catalysis Center\,\nSaudi Arabia\nChE-605 - Highlights i
 n Energy Research seminar series\nThe development of synthetic protocols f
 or the preparation of highly loaded metal nanoparticle supported catalysts
  has received a great deal of attention over the last few decades. Indepen
 dently controlling metal loading\, nanoparticle size\, distribution and ac
 cessibility has proven challenging because of the clear interdependence be
 tween these crucial performance parameters. Among the different strategies
  suggested in literature\, the use of metal-organic-frameworks (MOFs) as p
 recursors for the synthesis of catalytic nanomaterials offers unrivalled d
 esign possibilities\,1 as we will demonstrate in this presentation. Herein
  we will discuss the application of MOFs as catalyst precursors for the sy
 nthesis of highly loaded metal nanoparticle supported solids for applicati
 ons in syngas and CO2 related chemistries. 2-6 In the last part\, we will 
 introduce the use of MOFs as templates for the synthesis of single site ba
 sed catalysts with application in hydrogenation reactions.7\nReferences:\n
 (1)  Oar-Arteta\, L.\; Wezendonk\, T.\; Sun\, X.\; Kapteijn\, F.\; Gascon
 \, J. Materials Chemistry Frontiers 2017\, 1\, 1709.\n(2)  Santos\, V. P.
 \; Wezendonk\, T. A.\; Jaén\, J. J. D.\; Dugulan\, A. I.\; Nasalevich\, M
 . A.\; Islam\, H.-U.\; Chojecki\, A.\; Sartipi\, S.\; Sun\, X.\; Hakeem\, 
 A. A.\; Koeken\, A. C. J.\; Ruitenbeek\, M.\; Davidian\, T.\; Meima\, G. R
 .\; Sankar\, G.\; Kapteijn\, F.\; Makkee\, M.\; Gascon\, J. Nature Communi
 cations 2015\, 6\, 6451.\n(3)  Wezendonk\, T. A.\; Santos\, V. P.\; Nasal
 evich\, M. A.\; Warringa\, Q. S. E.\; Dugulan\, A. I.\; Chojecki\, A.\; Ko
 eken\, A. C. J.\; Ruitenbeek\, M.\; Meima\, G.\; Islam\, H.-U.\; Sankar\, 
 G.\; Makkee\, M.\; Kapteijn\, F.\; Gascon\, J. ACS Catalysis 2016\, 3236.\
 n(4)  Wezendonk\, T. A.\; Warringa\, Q. S. E.\; Santos\, V. P.\; Chojecki
 \, A.\; Ruitenbeek\, M.\; Meima\, G.\; Makkee\, M.\; Kapteijn\, F.\; Gasco
 n\, J. Faraday Discussions 2017\, 197 (1–2)\, 225.\n(5)  Sun\, X.\; Sua
 rez\, A. I. O.\; Meijerink\, M.\; Deelen\, T.\; Ould-Chikh\, S.\; Zečevi
 ć\, J.\; Jong\, K. P.\; Kapteijn\, F.\; Gascon\, J. Nature Communications
  2017\, 1.\n(6)  Sun\, X.\; Olivos Suarez\, A. I.\; Oar-Arteta\, L.\; Roz
 hko\, E.\; Osadchii\, D.\; Bavykina\, A.\; Kapteijn\, F.\; Gascon\, J. Che
 mCatChem 2017\, 9 (10)\, 1854.\n(7)  Sun\, X.\; Olivos Suarez\, A. I.\; O
 sadchii\, D.\; Romero\, M. J. V.\; Kapteijn\, F.\; Gascon\, J. Journal of 
 Catalysis 2018\, 357\, 20.\n 
LOCATION:I17 4 K2 https://plan.epfl.ch/?room==I17%204%20K2
STATUS:CONFIRMED
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