New directions in porous crystalline materials : the Royal Society of Edinburgh, UK, 5th-7th June 2017 / The Faraday Division of the Royal Society of Chemistry.

"Metal-organic frameworks (MOFs), covalent organic frameworks (COFs), and related molecular porous materials have entered a stage where not just the porosity, but other physical attributes are now playing a major role in their properties. Catalytic properties rivalling those of classic heteroge...

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Bibliographic Details
Format: Book
Language:English
Published: Cambridge : Royal Society of Chemistry, 2017.
Series:Faraday discussions of the Chemical Society ; v. 201.
Subjects:

MARC

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245 0 0 |a New directions in porous crystalline materials :  |b the Royal Society of Edinburgh, UK, 5th-7th June 2017 /  |c The Faraday Division of the Royal Society of Chemistry. 
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300 |a 411 pages :  |b Illustrations ;  |c 25 cm. 
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490 1 |a Faraday discussions ;  |v volume 201. 
500 |a "A general discussion on New Directions in Porous Crystalline Materials was held in Edinburgh, UK on 5th, 6th and 7th June 2017."--Page 5. 
504 |a Includes bibliographical references. 
520 |a "Metal-organic frameworks (MOFs), covalent organic frameworks (COFs), and related molecular porous materials have entered a stage where not just the porosity, but other physical attributes are now playing a major role in their properties. Catalytic properties rivalling those of classic heterogeneous catalysts are being unearthed by carefully engineering isolated active sites in the pores. Photophysical properties enabled by both the rigidity and the controlled dynamics of the porous environment are making strides from both fundamental and applied perspectives. Applications in energy storage are emerging as well, enabled by important advances in increasing the electrical and ionic conductivity in these materials to values that rival and even surpass those of organic semiconductors. Exciting magnetic properties are being reported in such materials with increasing frequency as well, suggesting that perhaps porous magnets and possibly superconductors are also within reach. This Discussion will thus focus on several important new directions in the chemistry of porous crystalline materials and will attempt to distill converging themes."-- From back cover. 
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