Search Results - "Burrows, Andrew D."
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Post-Synthetic Modification of Tagged Metal-Organic Frameworks
Published in Angewandte Chemie (International ed.) (01-01-2008)“…Playing tag with MOFs: Zinc metal–organic frameworks with pendant aldehyde and methoxy groups are prepared. The aldehyde‐tagged MOF takes up…”
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Evaluating Iodine Uptake in a Crystalline Sponge Using Dynamic X‑ray Crystallography
Published in Inorganic chemistry (07-05-2018)“…The uptake of gaseous iodine into the crystalline sponge material [(ZnI2)3(tpt)2]·0.7triphenylene·0.3PhNO2·0.7C6H12 1 (tpt =…”
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3
An Iodine-Vapor-Induced Cyclization in a Crystalline Molecular Flask
Published in Angewandte Chemie International Edition (10-05-2016)“…A vapor‐induced cyclization has been observed in the host environment of a crystalline molecular flask (CMF), within which 1,8‐bis(2‐phenylethynyl)naphthalene…”
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4
Manufacturing of metal-organic framework monoliths and their application in CO2 adsorption
Published in Microporous and mesoporous materials (15-09-2015)“…An important class of novel mesoporous and microporous adsorbents like metal-organic frameworks (MOFs) are normally produced in powder form. This paper…”
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Conformal transformation of [Co(bdc)(DMF)] (Co-MOF-71, bdc = 1,4-benzenedicarboxylate, DMF = N,N-dimethylformamide) into porous electrochemically active cobalt hydroxide
Published in Electrochemistry communications (01-02-2013)“…[Co(bdc)(DMF)] (Co-MOF-71 bdc = 1,4-benzenedicarboxylate DMF = N,N-dimethylformamide) has been previously reported to be a suitable supercapacitor material in…”
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Advances in two-dimensional materials for energy-efficient and molecular precise membranes for biohydrogen production
Published in Bioresource technology (01-11-2022)“…[Display omitted] •Downstream waste-to-hydrogen process can be realised with 2D material-based membrane.•Mechanism and fabrication methods of 2D material-based…”
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Biodegradable biopolymers for active packaging: demand, development and directions
Published in Sustainable Food Technology (26-01-2023)“…The food packaging industry is a major contributor to plastic waste. The end-of-life scenario of fossil-fuel derived plastics often has a detrimental effect on…”
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Mechanical characterisation of polymer of intrinsic microporosity PIM-1 for hydrogen storage applications
Published in Journal of materials science (01-04-2017)“…Polymers of intrinsic microporosity (PIMs) are currently attracting interest due to their unusual combination of high surface areas and capability to be…”
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Controlling the Uptake and Release of Semiochemicals in Channel‐Type Metal‐Organic Frameworks Through Pore Expansion
Published in Chemistry : a European journal (11-07-2024)“…Semiochemicals can be used to manipulate insect behaviour for sustainable pest management strategies, but their high volatility is a major issue for their…”
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Coupling Postsynthetic High-Temperature Oxidative Thermolysis and Thermal Rearrangements in Isoreticular Zinc MOFs
Published in Inorganic chemistry (17-01-2022)“…Herein, we report coupling in situ high temperature postsynthetic modifications (PSMs) in metal–organic frameworks (MOFs). Thermo-reactive…”
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11
Chemical modification of the polymer of intrinsic microporosity PIM-1 for enhanced hydrogen storage
Published in Adsorption : journal of the International Adsorption Society (01-10-2020)“…A detailed investigation has been carried out of the pre-polymerisation modification of the polymer of intrinsic microporosity PIM-1 by the addition of two…”
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12
An Iodine-Vapor-Induced Cyclization in a Crystalline Molecular Flask
Published in Angewandte Chemie (10-05-2016)“…A vapor‐induced cyclization has been observed in the host environment of a crystalline molecular flask (CMF), within which 1,8‐bis(2‐phenylethynyl)naphthalene…”
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13
Nanoporous polymer-based composites for enhanced hydrogen storage
Published in Adsorption : journal of the International Adsorption Society (15-05-2019)“…The exploration and evaluation of new composites possessing both processability and enhanced hydrogen storage capacity are of significant interest for onboard…”
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Inclusion and release of ant alarm pheromones from metal-organic frameworks
Published in Dalton transactions : an international journal of inorganic chemistry (04-08-2020)“…Zinc(ii) and zirconium(iv) metal-organic frameworks show uptake and slow release of the ant alarm pheromones 3-octanone and 4-methyl-3-heptanone. Inclusion of…”
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Electrocatalytic activity of Basolite™ F300 metal-organic-framework structures
Published in Electrochemistry communications (01-05-2010)Get full text
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16
Vanillin Cross-Linked Chitosan Film with Controlled Release of Green Tea Polyphenols for Active Food Packaging
Published in ACS food science & technology (20-10-2023)“…We report a novel cross-linked chitosan composite film containing vanillin, glycerol, and green tea extract. The effects of vanillin-mediated cross-linking and…”
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Incorporation by coordination and release of the iron chelator drug deferiprone from zinc-based metal-organic frameworks
Published in Chemical communications (Cambridge, England) (14-12-2013)“…A series of new zinc-based metal-organic framework materials has been prepared in which deferiprone is incorporated as a chelating ligand on infinite or…”
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Furnishing Amine-Functionalized Metal–Organic Frameworks with the β‑Amidoketone Group by Postsynthetic Modification
Published in Inorganic chemistry (07-11-2016)“…Postsynthetic modification (PSM) of amino-functionalized metal–organic frameworks (MOFs) to those bearing pendant β-amidoketone arms using diketene is herein…”
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A reagentless thermal post-synthetic rearrangement of an allyloxy-tagged metal-organic framework
Published in Chemical communications (Cambridge, England) (01-01-2013)“…Direct heating of a metal-organic framework provides a simple, controllable way of effecting a covalent post-synthetic modification. Herein we report that an…”
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Post‐Synthetic Mannich Chemistry on Metal‐Organic Frameworks: System‐Specific Reactivity and Functionality‐Triggered Dissolution
Published in Chemistry : a European journal (01-08-2018)“…The Mannich reaction of the zirconium MOF [Zr6O4(OH)4(bdc‐NH2)6] (UiO‐66‐NH2, bdc‐NH2=2‐amino‐1,4‐benzenedicarboxylate) with paraformaldehyde and pyrazole,…”
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