7 Catalysis by Metal Nanoparticles Encapsulated …
247
44. Huang Y, Gao S, Liu T, Lu J, Lin X, Li H, Cao R (2012) Palladium nanoparticles supported
on mixed-linker metal-organic frameworks as highly active catalysts for Heck reactions.
ChemPlusChem 77:106–112
45. Yan X, Wang K, Xu X, Wang S, Ning Q, Xiao W, Zhang N, Chen Z, Chen C (2018) Brønsted
basicity in metal-organic framework-808 and its application in base-free catalysis. Inorg Chem
57:8033–8036
46. Su FZ, Liu YM, Wang LC, Cao Y, He HY, Fan KN (2008) Ga-Al mixed-oxide-supported
gold nanoparticles with enhanced activity for aerobic alcohol oxidation. Angew Chem Int Ed
47:334–337
47. Santiago-Portillo A, Cabrero-Antonino M, Álvaro M, Navalón S, García H (2019) Tuning the
microenvironment of gold nanoparticles encapsulated within MIL-101(Cr) for the selective
oxidation of alcohols with O 2 : influence of the amino terephthalate linker. Chem Eur J 25:9280–
9286
48. Zhu J, Cheng Wang P, Lu M (2014) Selective oxidation of benzyl alcohol under solvent-free
condition with gold nanoparticles encapsulated in metal-organic framework. Appl Catal A Gen
477:125–131
49. Leus K, Concepcion P, Vandichel M, Meledina M, Grirrane A, Esquivel D, Turner S, Poelman
D, Waroquier M, Van Speybroeck V, Van Tendeloo G, Garcia H, Van Der Voort P (2015)
Au@UiO-66: a base free oxidation catalyst. RSC Adv 5:22334–22342
50. Abedi S, Morsali A (2017) Improved activity of palladium nanoparticles using a sulfurcontaining metal–organic framework as an efficient catalyst for selective aerobic oxidation
in water. New J Chem 41:5846–5852
51. Pascanu V, Bermejo Gomez A, Ayats C, Eva Platero-Prats A, Carson F, Su J, Yao Q, Pericas MA,
Zou X, Martín-Matute B (2015) Double-supported silica-metal–organic framework palladium
nanocatalyst for the aerobic oxidation of alcohols under batch and continuous flow regimes.
ACS Catal 5:472–479
52. Long J, Liu H, Wu S, Liao S, Li Y (2013) Selective oxidation of saturated hydrocarbons using
Au–Pd alloy nanoparticles supported on metal-organic frameworks. ACS Catal 3:647–654
53. Chen Y, Huang X, Feng X, Li J, Huang Y, Zhao J, Guo Y, Dong X, Han R, Qi P, Han Y, Li H,
Hu C, Wang B (2014) Facile fabrication of magnetically recyclable metal–organic framework
nanocomposites for highly efficient and selective catalytic oxidation of benzylic C–H bonds.
Chem Commun 50:8374–8377
54. Ning L, Liao S, Liu X, Guo P, Zhang Z, Zhang H, Tong X (2018) A regulatable oxidative valorization of furfural with aliphatic alcohols catalyzed by functionalized metal-organic
frameworks-supported Au nanoparticles. J Catal 364:1–13
55. Sadakiyo M, Kon-no M, Sato K, Nagaoka K, Kasai H, Kato K, Yamauchi M (2014) Synthesis
and catalytic application of PVP-coated Ru nanoparticles embedded in a porous metal–organic
framework. Dalton Trans 43:11295–11298
247
44. Huang Y, Gao S, Liu T, Lu J, Lin X, Li H, Cao R (2012) Palladium nanoparticles supported
on mixed-linker metal-organic frameworks as highly active catalysts for Heck reactions.
ChemPlusChem 77:106–112
45. Yan X, Wang K, Xu X, Wang S, Ning Q, Xiao W, Zhang N, Chen Z, Chen C (2018) Brønsted
basicity in metal-organic framework-808 and its application in base-free catalysis. Inorg Chem
57:8033–8036
46. Su FZ, Liu YM, Wang LC, Cao Y, He HY, Fan KN (2008) Ga-Al mixed-oxide-supported
gold nanoparticles with enhanced activity for aerobic alcohol oxidation. Angew Chem Int Ed
47:334–337
47. Santiago-Portillo A, Cabrero-Antonino M, Álvaro M, Navalón S, García H (2019) Tuning the
microenvironment of gold nanoparticles encapsulated within MIL-101(Cr) for the selective
oxidation of alcohols with O 2 : influence of the amino terephthalate linker. Chem Eur J 25:9280–
9286
48. Zhu J, Cheng Wang P, Lu M (2014) Selective oxidation of benzyl alcohol under solvent-free
condition with gold nanoparticles encapsulated in metal-organic framework. Appl Catal A Gen
477:125–131
49. Leus K, Concepcion P, Vandichel M, Meledina M, Grirrane A, Esquivel D, Turner S, Poelman
D, Waroquier M, Van Speybroeck V, Van Tendeloo G, Garcia H, Van Der Voort P (2015)
Au@UiO-66: a base free oxidation catalyst. RSC Adv 5:22334–22342
50. Abedi S, Morsali A (2017) Improved activity of palladium nanoparticles using a sulfurcontaining metal–organic framework as an efficient catalyst for selective aerobic oxidation
in water. New J Chem 41:5846–5852
51. Pascanu V, Bermejo Gomez A, Ayats C, Eva Platero-Prats A, Carson F, Su J, Yao Q, Pericas MA,
Zou X, Martín-Matute B (2015) Double-supported silica-metal–organic framework palladium
nanocatalyst for the aerobic oxidation of alcohols under batch and continuous flow regimes.
ACS Catal 5:472–479
52. Long J, Liu H, Wu S, Liao S, Li Y (2013) Selective oxidation of saturated hydrocarbons using
Au–Pd alloy nanoparticles supported on metal-organic frameworks. ACS Catal 3:647–654
53. Chen Y, Huang X, Feng X, Li J, Huang Y, Zhao J, Guo Y, Dong X, Han R, Qi P, Han Y, Li H,
Hu C, Wang B (2014) Facile fabrication of magnetically recyclable metal–organic framework
nanocomposites for highly efficient and selective catalytic oxidation of benzylic C–H bonds.
Chem Commun 50:8374–8377
54. Ning L, Liao S, Liu X, Guo P, Zhang Z, Zhang H, Tong X (2018) A regulatable oxidative valorization of furfural with aliphatic alcohols catalyzed by functionalized metal-organic
frameworks-supported Au nanoparticles. J Catal 364:1–13
55. Sadakiyo M, Kon-no M, Sato K, Nagaoka K, Kasai H, Kato K, Yamauchi M (2014) Synthesis
and catalytic application of PVP-coated Ru nanoparticles embedded in a porous metal–organic
framework. Dalton Trans 43:11295–11298
