Adsorption-Driven Heat Pumps: The Potential of Metal-Organic Frameworks.
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Towards metal–organic framework based field effect chemical sensors: UiO-66-NH2for nerve agent detectionA Lamellar Coordination Polymer with Remarkable Catalytic Activity.Single-crystal and humidity-controlled powder diffraction study of the breathing effect in a metal-organic framework upon water adsorption/desorption.Fe-MIL-101 exhibits selective cytotoxicity and inhibition of angiogenesis in ovarian cancer cells via downregulation of MMPRecord Atmospheric Fresh Water Capture and Heat Transfer with a Material Operating at the Water Uptake Reversibility Limit.Effect of pore size and shape on the thermal conductivity of metal-organic frameworks.And for MOFs' Next Trick: Pulling Water out of Thin Air.Synthesis of M-UiO-66 (M = Zr, Ce or Hf) employing 2,5-pyridinedicarboxylic acid as a linker: defect chemistry, framework hydrophilisation and sorption properties.Green Synthesis of a New Al-MOF Based on the Aliphatic Linker Mesaconic Acid: Structure, Properties and In Situ Crystallisation Studies of Al-MIL-68-Mes.Thermal Exfoliation of Layered Metal-Organic Frameworks into Ultrahydrophilic Graphene Stacks and Their Applications in Li-S Batteries.Synthesis Optimization, Shaping, and Heat Reallocation Evaluation of the Hydrophilic Metal-Organic Framework MIL-160(Al).Confining Functional Nanoparticles into Colloidal Imine-Based COF Spheres by a Sequential Encapsulation-Crystallization Method.Structural Effects in Visible-Light-Responsive Metal-Organic Frameworks Incorporating ortho-Fluoroazobenzenes.Understanding gas adsorption in MOF-5/graphene oxide composite materials.MOF catalysis of Fe(II)-to-Fe(III) reaction for an ultrafast and one-step generation of the Fe2O3@MOF composite and uranium(vi) reduction by iron(ii) under ambient conditions.A Hydrophobic Metal-Organic Framework Based on Cubane-Type [Co4 (μ3 -F)3 (μ3 -SO4 )](3+) Clusters for Gas Storage and Adsorption Selectivity of Benzene over Cyclohexane.Adsorption-based atmospheric water harvesting device for arid climates.Precise control of pore hydrophilicity enabled by post-synthetic cation exchange in metal-organic frameworks.Practical water production from desert air.Water adsorption behaviour of CAU-10-H: a thorough investigation of its structure–property relationships
P2860
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P2860
Adsorption-Driven Heat Pumps: The Potential of Metal-Organic Frameworks.
description
2015 nî lūn-bûn
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2015年の論文
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2015年学术文章
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2015年学术文章
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2015年学术文章
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2015年学术文章
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name
Adsorption-Driven Heat Pumps: The Potential of Metal-Organic Frameworks.
@en
Adsorption-Driven Heat Pumps: The Potential of Metal-Organic Frameworks.
@nl
type
label
Adsorption-Driven Heat Pumps: The Potential of Metal-Organic Frameworks.
@en
Adsorption-Driven Heat Pumps: The Potential of Metal-Organic Frameworks.
@nl
prefLabel
Adsorption-Driven Heat Pumps: The Potential of Metal-Organic Frameworks.
@en
Adsorption-Driven Heat Pumps: The Potential of Metal-Organic Frameworks.
@nl
P2093
P1433
P1476
Adsorption-Driven Heat Pumps: The Potential of Metal-Organic Frameworks.
@en
P2093
Karlijn J F M Verouden
Martijn F de Lange
Thijs J H Vlugt
P304
12205-12250
P356
10.1021/ACS.CHEMREV.5B00059
P577
2015-10-23T00:00:00Z