Articles with "capture" as a keyword



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Structure–Thermodynamic‐Property Relationships in Cyanovinyl‐Based Microporous Polymer Networks for the Future Design of Advanced Carbon Capture Materials

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Published in 2017 at "Advanced Functional Materials"

DOI: 10.1002/adfm.201700233

Abstract: Nitrogen‐rich solid absorbents, which have been immensely tested for carbon dioxide capture, seem until this date to be without decisive molecular engineering or design rules. Here, a family of cyanovinylene‐based microporous polymers synthesized under metal‐catalyzed… read more here.

Keywords: advanced carbon; based microporous; carbon; carbon capture ... See more keywords
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Engineered Microneedles for Interstitial Fluid Cell‐Free DNA Capture and Sensing Using Iontophoretic Dual‐Extraction Wearable Patch

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Published in 2020 at "Advanced Functional Materials"

DOI: 10.1002/adfm.202000591

Abstract: Interstitial fluid (ISF), as an emerging source of biomarkers, is unmistakably significant for disease diagnosis. Microneedles (MNs) provide a minimally invasive approach for extracting the desired molecules from ISF. However, existing MNs are limited by… read more here.

Keywords: free dna; capture; interstitial fluid; cell free ... See more keywords
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Asymmetric Redox-Polymer Interfaces for Electrochemical Reactive Separations: Synergistic Capture and Conversion of Arsenic.

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Published in 2019 at "Advanced materials"

DOI: 10.1002/adma.201906877

Abstract: Advanced redox-polymer materials offer a powerful platform for integrating electroseparations and electrocatalysis, especially for water purification and environmental remediation applications. The selective capture and remediation of trivalent arsenic (As(III)) is a central challenge for water… read more here.

Keywords: capture conversion; redox; asymmetric redox; capture ... See more keywords
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A Chemically Stable Hofmann-Type Metal-Organic Framework with Sandwich-Like Binding Sites for Benchmark Acetylene Capture.

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Published in 2020 at "Advanced materials"

DOI: 10.1002/adma.201908275

Abstract: The realization of porous materials for highly selective separation of acetylene (C2 H2 ) from various other gases (e.g., carbon dioxide and ethylene) by adsorption is of prime importance but challenging in the petrochemical industry.… read more here.

Keywords: hofmann type; chemically stable; type; stable hofmann ... See more keywords
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Rapid Capture of Cancer Extracellular Vesicles by Lipid Patch Microarrays.

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Published in 2021 at "Advanced materials"

DOI: 10.1002/adma.202008493

Abstract: Extracellular vesicles (EVs) contain various bioactive molecules such as DNA, RNA, and proteins, and play a key role in the regulation of cancer progression. Furthermore, cancer-associated EVs carry specific biomarkers and can be used in… read more here.

Keywords: extracellular vesicles; associated evs; rapid capture; cancer ... See more keywords
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Poly(ethylene terephthalate) Fibers with a Thin Layer of Click‐Based Microporous Organic Network: Enhanced Capture Performance toward PM2.5

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Published in 2018 at "Advanced Materials Interfaces"

DOI: 10.1002/admi.201800628

Abstract: DOI: 10.1002/admi.201800628 For example, porous polymeric monoliths have been prepared for the removal of PMs.[3] Recently, various membranes consisting of fibers have been engineered.[4–7] Especially, electrospinning is a powerful method used to fabricate polymer fibers… read more here.

Keywords: pet fibers; chemistry; poly ethylene; performance ... See more keywords
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Patterned Nanobrush Nature Mimics with Unprecedented Water‐Harvesting Efficiency

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Published in 2018 at "Advanced Materials Interfaces"

DOI: 10.1002/admi.201800667

Abstract: DOI: 10.1002/admi.201800667 This is due to the fact that at any given moment, the earth’s atmosphere contains an astounding 37.5 million billion gallons of water as vapor,[2] and an efficient device to capture a fraction… read more here.

Keywords: water; surface; nature; efficiency ... See more keywords
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Hyperporous Carbon from Triptycene‐Based Hypercrosslinked Polymer for Iodine Capture

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Published in 2019 at "Advanced Materials Interfaces"

DOI: 10.1002/admi.201900249

Abstract: Considering the nuclear fuel reprocessing conditions at 75 °C and the oxidizability of iodine, thermal and chemical stabilities are especially important for porous materials to enrich iodine. However, most organic or metal coordinated porous materials… read more here.

Keywords: capture; hyperporous carbon; carbon; hypercrosslinked polymer ... See more keywords
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Synthesis and Enhanced Capture Properties of a New BioMOF@SWCNT‐BP: Recovery of the Endangered Rare‐Earth Elements from Aqueous Systems

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Published in 2021 at "Advanced Materials Interfaces"

DOI: 10.1002/admi.202100730

Abstract: Human society is facing—among other environmental threats—an enormous challenge due to human activities. The extensive use of high‐tech devices and electronics equipment in the daily life makes, among others, rare‐earth elements (REEs) recovery from secondary… read more here.

Keywords: biomof; biomof swcnt; recovery; earth elements ... See more keywords
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[EMmim][NTf2]—a Novel Ionic Liquid (IL) in Catalytic CO2 Capture and ILs’ Applications

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Published in 2022 at "Advanced Science"

DOI: 10.1002/advs.202205352

Abstract: Ionic liquids (ILs) have been used for carbon dioxide (CO2) capture, however, which have never been used as catalysts to accelerate CO2 capture. The record is broken by a uniquely designed IL, [EMmim][NTf2]. The IL… read more here.

Keywords: co2 capture; catalytic co2; emmim ntf2; capture ... See more keywords
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Mixed Diethanolamine and Polyethyleneimine with Enhanced CO2 Capture Capacity from Air

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Published in 2023 at "Advanced Science"

DOI: 10.1002/advs.202207253

Abstract: Supported polyethyleneimine (PEI) adsorbent is one of the most promising commercial direct air capture (DAC) adsorbents with a long research history since 2002. Although great efforts have been input, there are still limited improvements for… read more here.

Keywords: pei; capacity; air; polyethyleneimine ... See more keywords