Controllable Encapsulation of "Clean" Metal Clusters within MOFs through Kinetic Modulation: Towards Advanced Heterogeneous Nanocatalysts

scientific article published on 11 March 2016

Controllable Encapsulation of "Clean" Metal Clusters within MOFs through Kinetic Modulation: Towards Advanced Heterogeneous Nanocatalysts is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1002/ANIE.201511009
P932PMC publication ID5069584
P698PubMed publication ID26970412

P50authorRafael LuqueQ37371616
Yingwei LiQ43126971
Liyu ChenQ61173094
Cuihua BaiQ85401741
P2093author name stringHongli Liu
Lina Chang
P2860cites workChemistry and properties of nanocrystals of different shapes.Q36096252
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Chemical Environment Control and Enhanced Catalytic Performance of Platinum Nanoparticles Embedded in Nanocrystalline Metal–Organic FrameworksQ56086462
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Metal-free Inorganic Ligands for Colloidal Nanocrystals: S2–, HS–, Se2–, HSe–, Te2–, HTe–, TeS32–, OH–, and NH2–as Surface LigandsQ59389435
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Imparting functionality to a metal–organic framework material by controlled nanoparticle encapsulationQ62395400
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Nucleation reaction dynamics of Pt nanoparticles observed by the heterodyne transient grating methodQ82447801
Ceria Maintains Smaller Metal Catalyst Particles by Strong Metal-Support BondingQ84774128
Controlled self-assembly of metal-organic frameworks on metal nanoparticles for efficient synthesis of hybrid nanostructuresQ84946885
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P433issue16
P407language of work or nameEnglishQ1860
P304page(s)5019-5023
P577publication date2016-03-11
P1433published inAngewandte Chemie International EditionQ62023953
P1476titleControllable Encapsulation of "Clean" Metal Clusters within MOFs through Kinetic Modulation: Towards Advanced Heterogeneous Nanocatalysts
P478volume55

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