Search results for "nanomaterial"

showing 10 items of 330 documents

Precision Anisotropic Brush Polymers by Sequence Controlled Chemistry

2020

The programming of nanomaterials at molecular length-scales to control architecture and function represents a pinnacle in soft materials synthesis. Although elusive in synthetic materials, Nature has evolutionarily refined macromolecular synthesis with perfect atomic resolution across three-dimensional space that serves specific functions. We show that biomolecules, specifically proteins, provide an intrinsic macromolecular backbone for the construction of anisotropic brush polymers with monodisperse lengths via grafting-from strategy. Using human serum albumin as a model, its sequence was exploited to chemically transform a single cysteine, such that the expression of said functionality is…

chemistry.chemical_classificationChemistryBiomoleculeDispersityBrushSequence (biology)NanotechnologyGeneral ChemistryPolymer010402 general chemistry01 natural sciencesBiochemistryCatalysisArticle0104 chemical scienceslaw.inventionNanomaterialsColloid and Surface ChemistrylawAnisotropyMacromolecule
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Silicatein: from chemical through enzymatic silica formation, to synthesis of biomimetic nanomaterials

2012

Silicateins are the enzymes that had been identified in sponges, then sequenced and expressed. They are not only the enzymes facilitating biosilica synthesis but also function as structure-guiding and structure-forming proteins. The three minireviews highlight the principles of silicatein-mediated biosilica formation and outline the bionic strategies which might be used for the design and fabrication of novel materials.

chemistry.chemical_classificationChemistryNanotechnology04 agricultural and veterinary sciences02 engineering and technologyCell Biology021001 nanoscience & nanotechnologyBiochemistryNanomaterialsEnzyme040102 fisheries0401 agriculture forestry and fisheries0210 nano-technologyMolecular BiologyFunction (biology)FEBS J.
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A Step into the Future: Applications of Nanoparticle Enzyme Mimics.

2018

We describe elementary concepts, up-to-date developments, and perspectives of the emerging field of nanoparticle enzyme mimics (so-called "nanozymes") at the interface of chemistry, biology, materials, and nanotechnology. The design and synthesis of functional enzyme mimics is a long-standing goal of biomimetic chemistry. Metal complexes, polymers and engineered biomolecules capturing the structure of natural enzymes or their active centers have been made to achieve high rates and enhanced selectivities. Still, the design of new "artificial enzymes" that are not related to proteins but with capacity of production and stability at industrial level, remains a goal. Inorganic nanoparticles bea…

chemistry.chemical_classificationHigh rateBiomoleculeOrganic ChemistryIrregular shapeNanoparticleProteinsNanotechnology02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesCatalysis0104 chemical sciencesNanomaterialsEnzymesEnzymechemistryBiomimeticsCoordination ComplexesNanoparticlesNanotechnology0210 nano-technologyInorganic nanoparticlesChemistry (Weinheim an der Bergstrasse, Germany)
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Iron and iron-oxide magnetic nanoparticles as signal-amplification elements in electrochemical biosensing

2015

Abstract Growing demands for ultrasensitive biosensing have led to the development of numerous signal-amplification strategies. Based on their unique properties (i.e., electro-conductivity, bio-compatibility and ease of synthesis), various iron magnetic nanoparticles (MNPs) have proved to be an excellent nanomaterial for applications in electrochemical biosensing. This review shows how iron MNPs have made significant contributions in the development of electrochemical nanobiosensors, including immuno-, enzyme, DNA and aptamer types. More importantly, we discuss in detail different aspects of the electrochemical biosensors (e.g., modes of magnetic particles, detection techniques, analytes an…

chemistry.chemical_classificationMaterials scienceBiomoleculeAptamerIron oxideNanotechnologyElectrochemistryAnalytical ChemistryNanomaterialschemistry.chemical_compoundchemistryElectrochemical biosensorMagnetic nanoparticlesBiosensorSpectroscopyTrAC Trends in Analytical Chemistry
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Enzyme-modified electrodes for biosensors and biofuel cells

2019

In biosensors and biofuel cells, it is often desirable to accelerate the electron transfer rate between the enzyme and electrode surface to improve the performance of the devices (sensitivity or power output). To this end, in this review, we focus on three important strategies available to improve the performance of enzyme-modified electrodes: the use of protein engineering, designer polymers, and the introduction of nanomaterials. Engineering the protein or proteins that constitute the biocatalytic elements allow tuning their stability, activity, and specificity. It can also allow changing the enzyme immobilization efficiency (adsorption vs. covalent immobilization, for example). If direct…

chemistry.chemical_classificationMaterials scienceImmobilized enzymeGrapheneProcess Chemistry and TechnologyMolecularly imprinted polymerNanotechnology02 engineering and technologyCarbon nanotubePolymer010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical scienceslaw.inventionNanomaterialsElectron transferchemistryMechanics of MaterialslawGeneral Materials ScienceElectrical and Electronic Engineering0210 nano-technologyBiosensorMaterials Horizons
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Magnetically enhanced polymer-supported ceria nanocatalysts for the hydration of nitriles.

2020

The heterogeneous catalysis of the hydration of nitriles to amides is a process of great industrial relevance in which cerium(IV) oxide (also referred to as ceria) has shown an outstanding catalytic performance. The use of non-supported ceria nanoparticles is related to difficulties in the purification of the product and the recovery and recyclability of the catalyst. Therefore, in this work, ceria nanoparticles are supported on a polymer matrix either by synthesizing polymer particles by so-called Pickering miniemulsions while using ceria nanoparticles as emulsion stabilizers or, as a comparison, by in-situ crystallization on preformed polymer particles. The former strategy presents signif…

chemistry.chemical_classificationMaterials scienceMechanical EngineeringNanoparticlechemistry.chemical_elementBioengineering02 engineering and technologyGeneral ChemistryPolymer010402 general chemistry021001 nanoscience & nanotechnologyHeterogeneous catalysis01 natural sciencesPickering emulsionNanomaterial-based catalyst0104 chemical sciencesCatalysisMiniemulsionCeriumchemistryChemical engineeringMechanics of MaterialsGeneral Materials ScienceElectrical and Electronic Engineering0210 nano-technologyNanotechnology
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Recent Applications of Carbonaceous Nanosorbents in Solid Phase Extraction for the Determination of Pesticides in Food Samples

2018

This article covers recent trends of carbonaceous nanomaterial supported solid phase extraction for the liquid and gas chromatography analysis of pesticides in food samples. Several advanced carbonaceous nanosorbents have been reported over the previous decade for pesticide extraction, such as graphene derivatives modified by combination with silica, amines, polymers, and/or magnetic nanoparticles. The advances in this field have opened possibilities for using neat or modified carbon nanotubes or graphene-type sorbents for the pre-concentration of polar or nonpolar pesticides by solid phase extraction (SPE) or micro-SPE methods or to apply such nanomaterials for the removal of matrix compon…

chemistry.chemical_classificationMaterials scienceNanotubes CarbonSolid Phase Extraction010401 analytical chemistryExtraction (chemistry)Food Contamination02 engineering and technologyPolymer021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesAnalytical ChemistryNanomaterialsMatrix (chemical analysis)chemistryChemical engineeringMagnetic nanoparticlesSolid phase extractionGas chromatographyPesticides0210 nano-technologyReusabilityCritical Reviews in Analytical Chemistry
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Modern trends in solid phase extraction: New sorbent media

2016

Abstract Based on the recently published literature, this review provides an update of the most important features and application of formats and devices employed in solid phase extraction (SPE). Special attention was paid on new trapping media proposed in SPE prior the chromatography analysis, based on the use of nanostructured materials, including carbon nanomaterials, electrospun nanofibers, dendrimes and magnetic nanoparticles, molecular recognition sorbents, as aptamers, immunosorbents, molecular imprinted polymers, ion imprinting polymers, metal-organic frameworks and restricted access materials. Discussions on the present limitations as well as expected future trends of the new trapp…

chemistry.chemical_classificationMaterials scienceSorbent010401 analytical chemistryNanotechnology02 engineering and technologyPolymerImmunosorbents021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesAnalytical ChemistryNanomaterialsMolecular recognitionchemistryMagnetic nanoparticlesSample preparationSolid phase extraction0210 nano-technologySpectroscopyTrAC Trends in Analytical Chemistry
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Biocompatible Poly(N-isopropylacrylamide)-halloysite Nanotubes for Thermoresponsive Curcumin Release

2015

The grafting of poly(N-isopropylacrylamide) (PNIPAAM) onto the halloysite external surface is proposed in order to obtain a novel thermoresponsive drug carrier for curcumin delivery. The new nanomaterial is characterized by means of FT-IR spectroscopy, thermogravimetric analysis, and SEM investigations. A high density of polymer chain was achieved at the nanoparticle surface. The PNIPAAM dehydration phenomenon was observed in water above 32 °C that is nearly coincident with the lower critical solution temperature for the polymer. The colloidal stability as well as the wettability of the obtained nanomaterial may be triggered by temperature stimuli. In vitro tests simulating the gastro-intes…

chemistry.chemical_classificationThermogravimetric analysisMaterials scienceNanoparticleNanotechnologySettore CHIM/06 - Chimica OrganicaPolymerengineering.materialLower critical solution temperatureHalloysiteSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsNanomaterialschemistry.chemical_compoundGeneral EnergychemistryPoly(N-isopropylacrylamide)engineeringPhysical and Theoretical ChemistryDrug carrierhalloysite nanotubes PNIPAAM covalent grafting curcumin releaseSettore CHIM/02 - Chimica FisicaThe Journal of Physical Chemistry C
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Solids Go Bio: Inorganic Nanoparticles as Enzyme Mimics

2016

A longstanding goal of biomimetic chemistry is the design and synthesis of functional enzyme mimics. The past three decades have seen a wide variety of materials, including metal complexes, polymers and other biomolecules, that mimic the structures and functions of naturally occurring enzymes. Among these, inorganic nanoparticles offer huge potential, because they are more stable than their natural counterparts, while having large surface areas and sizes comparable to those of natural enzymes. Therefore, a considerable number of “artificial enzymes” derived from inorganic nanomaterials have been reported. This microreview highlights the recent progress in the field of enzymatically active i…

chemistry.chemical_classificationbiologyBiomoleculeNanoparticleNanotechnology02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesNanomaterialsInorganic ChemistryEnzymechemistryBiocatalysisbiology.protein0210 nano-technologyInorganic nanoparticlesPeroxidaseEuropean Journal of Inorganic Chemistry
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