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Journal ArticleDOI

Selective gas adsorption and separation in metal–organic frameworks

Jian-Rong Li, +2 more
- 21 Apr 2009 - 
- Vol. 38, Iss: 5, pp 1477-1504
TLDR
This critical review starts with a brief introduction to gas separation and purification based on selective adsorption, followed by a review of gas selective adsorbents in rigid and flexible MOFs, and primary relationships between adsorptive properties and framework features are analyzed.
Abstract
Adsorptive separation is very important in industry. Generally, the process uses porous solid materials such as zeolites, activated carbons, or silica gels as adsorbents. With an ever increasing need for a more efficient, energy-saving, and environmentally benign procedure for gas separation, adsorbents with tailored structures and tunable surface properties must be found. Metal–organic frameworks (MOFs), constructed by metal-containing nodes connected by organic bridges, are such a new type of porous materials. They are promising candidates as adsorbents for gas separations due to their large surface areas, adjustable pore sizes and controllable properties, as well as acceptable thermal stability. This critical review starts with a brief introduction to gas separation and purification based on selective adsorption, followed by a review of gas selective adsorption in rigid and flexible MOFs. Based on possible mechanisms, selective adsorptions observed in MOFs are classified, and primary relationships between adsorption properties and framework features are analyzed. As a specific example of tailor-made MOFs, mesh-adjustable molecular sieves are emphasized and the underlying working mechanism elucidated. In addition to the experimental aspect, theoretical investigations from adsorption equilibrium to diffusion dynamics via molecular simulations are also briefly reviewed. Furthermore, gas separations in MOFs, including the molecular sieving effect, kinetic separation, the quantum sieving effect for H2/D2 separation, and MOF-based membranes are also summarized (227 references).

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Citations
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Journal ArticleDOI

Photoactive Chiral Metal–Organic Frameworks for Light-Driven Asymmetric α-Alkylation of Aldehydes

TL;DR: Two enantiomeric MOFs are developed to prompt the asymmetric α-alkylation of aliphatic aldehydes in a heterogeneous manner and it is demonstrated that the integration of both photocatalyst and asymmetric organocatalyst into a single MOF makes the enantioselection superior to that of simply mixing the corresponding MOFs with the chiral adduct.
Journal ArticleDOI

Postsynthetic ligand exchange as a route to functionalization of ‘inert’ metal–organic frameworks

TL;DR: In this paper, it is shown that ligand exchange can occur with inert Zr(IV)-based UiO-66 MOFs in a solvent dependent manner, using post-synthetic exchange (PSE).
Journal ArticleDOI

Reversed thermo-switchable molecular sieving membranes composed of two-dimensional metal-organic nanosheets for gas separation

TL;DR: In this article, the authors presented nm-thick molecular sieving membranes composed of porous two-dimensional metal-organic nanosheets, which possess pore openings parallel to gas concentration gradient allowing high gas permeation flux and high selectivity, which are proven by both experiment and molecular dynamics simulation.
Journal ArticleDOI

Template-Free Synthesis of a Highly Porous Benzimidazole-Linked Polymer for CO2 Capture and H2 Storage

TL;DR: In this paper, a highly porous benzimidazole-linked polymer (SABET 1172 m2/g) exhibits very high gas selectivity CO 2/N2 (70) and CO2/CH4 (10) and can store CO 2 (19 wt %, 273 K, 1 bar) and H2 (1.9 wt percent, 77 K,1 bar) with Qst values of 26.7 and 7.9 kJ/mol, respectively.
Journal ArticleDOI

Metal–organic frameworks as heterogeneous photocatalysts: advantages and challenges

TL;DR: In this paper, the use of metal organic frameworks (MOFs) as heterogeneous photocatalysts is reviewed and the main approaches for efficient light harvesting and active site engineering in MOF-based photocatalyst are discussed.
References
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Journal ArticleDOI

Functional porous coordination polymers.

TL;DR: The aim is to present the state of the art chemistry and physics of and in the micropores of porous coordination polymers, and the next generation of porous functions based on dynamic crystal transformations caused by guest molecules or physical stimuli.
Journal ArticleDOI

Reticular synthesis and the design of new materials

TL;DR: This work has shown that highly porous frameworks held together by strong metal–oxygen–carbon bonds and with exceptionally large surface area and capacity for gas storage have been prepared and their pore metrics systematically varied and functionalized.
Journal ArticleDOI

Design and synthesis of an exceptionally stable and highly porous metal-organic framework

TL;DR: In this article, an organic dicarboxylate linker is used in a reaction that gives supertetrahedron clusters when capped with monocarboxyates.
Journal ArticleDOI

Hybrid porous solids: past, present, future

TL;DR: The state-of-the-art on hybrid porous solids, their advantages, their new routes of synthesis, the structural concepts useful for their 'design', aiming at reaching very large pores are presented.
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