Search results for "Advanced materials"

showing 10 items of 15 documents

Near infrared spectroscopic study on the adsorption of methanol on silica gel

2013

Author's version of an article in the journal: Advanced Materials Research. Also available from the publisher at: http://dx.doi.org/10.4028/www.scientific.net/AMR.650.150 The silanol groups on Silica gel surface are sites for adsorption of polar molecules. Alcohols and other polar molecules are easily adsorbed by forming hydrogen bondings with OH groups on silica gel surface. A study on the adsorption of methanol on silica gel was carried out by using NIR spectroscopy in combination with ssecond derivative techniques. Four of the well characterised silica gel samples were used in this study. Each of the silica gel (0.25g) samples with different surface areas and silanol number was pressed i…

VDP::Mathematics and natural science: 400::Chemistry: 440Silica gelnear infrared spectroscopyVDP::Technology: 500::Chemical engineering: 560Near-infrared spectroscopyInorganic chemistryGeneral EngineeringAnalytical chemistryAdvanced materialssecond derivative profileschemistry.chemical_compoundAdsorptionchemistrysilanol groupsMethanolmethanol
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The Nature of Rest Silanol Groups on the Surfaces of Silica Based Solid Phase Extraction Materials

2013

Author's version of an article in the journal: Advanced Materials Research. Also available from the publisher at: http://dx.doi.org/10.4028/www.scientific.net/AMR.650.66 Chemically bonded solid phase materials are very important in separation chemistry. The chemically modified silica gel contains rest silanol groups that can affect the retention properties when they are used for separation of compounds. Some commercially available solid phase extraction (SPE) materials based on silica gel were analysed for rest silanol groups by near infrared spectroscopy. The combination frequency of the water molecules in the 5500- 5000 cm -1 region was used in identifying the nature of water molecules on…

Rest (physics)VDP::Mathematics and natural science: 400::Chemistry: 440near infrared spectroscopyVDP::Technology: 500::Chemical engineering: 560Chemistrysolid phase extractionGeneral EngineeringAnalytical chemistryAdvanced materialssecond derivative profilesSilanolchemistry.chemical_compoundChemical engineeringsilanol groupsEndcappingSolid phase extractionAdvanced Materials Research
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Front Cover Advanced Materials 3/2012

2012

Front coverMaterials scienceMechanical engineeringGeneral Materials ScienceAdvanced materialsCondensed Matter PhysicsAdvanced Engineering Materials
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Advanced materials modelling via fractional calculus: challenges and perspectives.

2020

Fractional calculus is now a well-established tool in engineering science, with very promising applications in materials modelling. Indeed, several studies have shown that fractional operators can successfully describe complex long-memory and multiscale phenomena in materials, which can hardly be captured by standard mathematical approaches as, for instance, classical differential calculus. Furthermore, fractional calculus has recently proved to be an excellent framework for modelling non-conventional fractal and non-local media, opening valuable prospects on future engineered materials. The theme issue gathers cutting-edge theoretical, computational and experimental studies on advanced mat…

IntroductionComputer scienceGeneral MathematicsGeneral EngineeringCalculusGeneral Physics and AstronomyAdvanced materialsFractional calculusPhilosophical transactions. Series A, Mathematical, physical, and engineering sciences
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Membranes and More. Membrane-Mimetic Approach to Advanced Materials. ByJ. H. Fendler, Advances in Polymeric Science, Vol. 113, Springer, Berlin 1994,…

1995

MembraneMaterials sciencePolymer scienceMechanics of MaterialsMechanical EngineeringGeneral Materials ScienceMembrane mimeticAdvanced materialsAdvanced Materials
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Emerging Evidences of Mesoscopic-Scale Complexity in Neat Ionic Liquids and Their Mixtures

2017

Ionic liquids (ILs) represent a blooming class of continuously developing advanced materials, with the aiming of a green chemical industry. Their appealing physical and chemical properties are largely influenced by their micro- and mesoscopic structure that is known to possess a high degree of hierarchical organization. High-impact application fields are largely affected by the complex morphology of neat ionic liquids and their mixtures. This Perspective highlights new arising research directions that point to an enhanced level of structural complexity in several IL-based systems, including mixtures. The latter represent a change in paradigm in the approach to formulate new, task-specific I…

Mesoscopic physicsScale (chemistry)ethylammonium; ionic liquids; 1-ethyl-3-methylimidazoliumionic liuquidNanotechnology02 engineering and technologyAdvanced materials1-ethyl-3-methylimidazolium010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesionic liquidschemistry.chemical_compoundethylammoniumchemistryIonic liquidHierarchical organizationGeneral Materials ScienceMaterials Science (all)Physical and Theoretical Chemistry0210 nano-technologyPhenomenology (psychology)The Journal of Physical Chemistry Letters
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Optical and electrochemical DNA nanobiosensors

2011

In the past two decades, nanoscale advanced materials have been explored for biosensing molecules, so new horizons have opened up for identifying and quantifying biomolecules, and possible early diagnosis of diseases. DNA nanobiosensors show promise. This article provides an overview on their optical and electrochemical aspects. We discuss recent progress in this field, describing basic concepts of molecular beacons and quantum dots as optical nano-imaging systems. Also, carbon nanotubes provide a platform for development and advancement of electrochemical DNA nanobiosensors, which are increasingly being implemented as robust tools for detection in biomedical sciences. Refereed/Peer-reviewed

New horizonsmolecular beaconChemistryfield-effect transistorpiezoelectric DNA biosensorquantum dotNanotechnologyAdvanced materialsChemical sensorAnalytical Chemistryoptical DNA nanobiosensorsurface-plasmon resonancecarbon nanotubeelectrochemical DNA nanobiosensornanobiosensorSpectroscopygenosensor
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Recent Advances on the Halo- and Cyano-Trifluoromethylation of Alkenes and Alkynes

2021

Incorporation of fluorine into organic molecules is a well-established strategy in the design of advanced materials, agrochemicals, and pharmaceuticals. Among numerous modern synthetic approaches, functionalization of unsaturated bonds with simultaneous addition of trifluoromethyl group along with other substituents is currently one of the most attractive methods undergoing wide-ranging development. In this review article, we discuss the most significant contributions made in this area during the last decade (2012−2021). The reactions reviewed in this work include chloro-, bromo-, iodo-, fluoro- and cyano-trifluoromethylation of alkenes and alkynes.

difunctionalizationPharmaceutical Sciencechemistry.chemical_elementReviewAdvanced materialsalkynesAnalytical ChemistryOrganic moleculeschemistry.chemical_compoundQD241-441Unsaturated bondsDrug DiscoveryPhysical and Theoretical ChemistryTrifluoromethylalkenesTrifluoromethylationcyanotrifluoromethylationOrganic ChemistryCombinatorial chemistryhalotrifluoromethylationchemistryAlquensChemistry (miscellaneous)Fluorinesynthetic methodsMolecular MedicineQuímica orgànica
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Helix Inversion Controlled by Molecular Motors in Multistate Liquid Crystals.

2020

Unravelling the rules of molecular motion is a contemporary challenge that promises to support the development of responsive materials and is likely to enhance the understanding of functional motion. Advances in integrating light‐driven molecular motors in soft matter have led to the design and realization of chiral nematic (cholesteric) liquid crystals that can respond to light with modification of their helical pitch, and also with helix inversion. Under illumination, these chiral liquid crystals convert from one helical geometry to another. Here, a series of light‐driven molecular motors that feature a rich configurational landscape is presented, specifically which involves three stable …

Materials scienceMOTIONchiralitynanotekniikka02 engineering and technologyAdvanced materials010402 general chemistrylight‐responsive materials01 natural sciencesmolecular motorslight-responsive materialsliquid crystalsLiquid crystalMolecular motorMolecular motionmolekyylimoottoritGeneral Materials ScienceSoft matterbusiness.industryMechanical EngineeringmolekyylitAMPLIFICATIONSWITCHESDRIVENkiteet021001 nanoscience & nanotechnology0104 chemical sciencesCHIRALITYMechanics of MaterialsChemical physicsHelixvalokemiaPhotonics0210 nano-technologyChirality (chemistry)businessREORGANIZATIONAdvanced materials (Deerfield Beach, Fla.)
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Interface Molecular engineering for laminated monolithic perovskite/silicon tandem solar cells with 80.4% fill factor

2019

The Cluster of Excellence funded this work through “Engineering of Advanced Materials” (EAM). The authors acknowledge financial support from the DFG research-training group GRK 1896 at Erlangen University and from the Joint Project Helmholtz-Institute Erlangen Nurnberg (HI-ERN) under Project No. DBF01253, respectively. C.J.B. acknowledges the financial support through the “Aufbruch Bayern” initiative of the state of Bavaria (EnCN and Solar Factory of the Future) and the “Solar Factory of the Future” with the Energy Campus Nurnberg (EnCN). S.L. acknowledges the Real Colegio Complutense in Harvard for a research grant, and to the Spanish Ministerio de Ciencia e Innovacion for a fellowship thr…

Materials scienceEuropean researchLibrary scienceData interpretation02 engineering and technologyAdvanced materials010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciences7. Clean energy0104 chemical sciencesElectronic Optical and Magnetic MaterialsBiomaterialsElectrochemistryExperimental workFill factorChristian ministryDinàmica molecular0210 nano-technologyMaterialsCèl·lules fotoelèctriques
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