The use of sol-immobilisation to prepare supported metal nanoparticles is an area of growing importance in heterogeneous catalysis; it affords greater control of nanoparticle properties compared to conventional catalytic routes e.g. impregnation. This work, and other recent studies, demonstrate how the properties of the resultant supported metal nanoparticles can be tailored by adjusting the conditions of colloidal synthesis i.e. temperature and solvent. We further demonstrate the applicability of these methods to the hydrogenation of nitrophenols using a series of tailored Pd/TiO2 catalysts, with low Pd loading of 0.2 wt%. Here, the temperature of colloidal synthesis is directly related to the mean particle diameter and the catalytic activity. Smaller Pd particles (2.2 nm, k = 0.632 min-1, TOF = 560 h-1) perform better than their larger counterparts (2.6 nm, k = 0.350 min-1, TOF = 370 h-1) for the hydrogenation of p-nitrophenol, with the catalyst containing smaller NPs found to have increased stability during recyclability studies, with high activity (>90% conversion after 5 minutes) maintained across 5 catalytic cycles.

Supported metal nanoparticles with tailored catalytic properties through sol-immobilisation: Applications for the hydrogenation of nitrophenols / Rogers, Scott M.; Catlow, C. Richard A.; Gianolio, Diego; Wells, Peter P.; Dimitratos, Nikolaos. - In: FARADAY DISCUSSIONS. - ISSN 1364-5498. - STAMPA. - 208:0(2018), pp. 443-454. [10.1039/c7fd00216e]

Supported metal nanoparticles with tailored catalytic properties through sol-immobilisation: Applications for the hydrogenation of nitrophenols

Dimitratos, Nikolaos
2018

Abstract

The use of sol-immobilisation to prepare supported metal nanoparticles is an area of growing importance in heterogeneous catalysis; it affords greater control of nanoparticle properties compared to conventional catalytic routes e.g. impregnation. This work, and other recent studies, demonstrate how the properties of the resultant supported metal nanoparticles can be tailored by adjusting the conditions of colloidal synthesis i.e. temperature and solvent. We further demonstrate the applicability of these methods to the hydrogenation of nitrophenols using a series of tailored Pd/TiO2 catalysts, with low Pd loading of 0.2 wt%. Here, the temperature of colloidal synthesis is directly related to the mean particle diameter and the catalytic activity. Smaller Pd particles (2.2 nm, k = 0.632 min-1, TOF = 560 h-1) perform better than their larger counterparts (2.6 nm, k = 0.350 min-1, TOF = 370 h-1) for the hydrogenation of p-nitrophenol, with the catalyst containing smaller NPs found to have increased stability during recyclability studies, with high activity (>90% conversion after 5 minutes) maintained across 5 catalytic cycles.
2018
Supported metal nanoparticles with tailored catalytic properties through sol-immobilisation: Applications for the hydrogenation of nitrophenols / Rogers, Scott M.; Catlow, C. Richard A.; Gianolio, Diego; Wells, Peter P.; Dimitratos, Nikolaos. - In: FARADAY DISCUSSIONS. - ISSN 1364-5498. - STAMPA. - 208:0(2018), pp. 443-454. [10.1039/c7fd00216e]
Rogers, Scott M.; Catlow, C. Richard A.; Gianolio, Diego; Wells, Peter P.; Dimitratos, Nikolaos
File in questo prodotto:
Eventuali allegati, non sono esposti

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/11585/666926
 Attenzione

Attenzione! I dati visualizzati non sono stati sottoposti a validazione da parte dell'ateneo

Citazioni
  • ???jsp.display-item.citation.pmc??? 1
  • Scopus 13
  • ???jsp.display-item.citation.isi??? 11
social impact