Search results for "540 Chemistry and allied sciences"

showing 10 items of 77 documents

Bridging rigidity and flexibility : modulation of supramolecular hydrogels by metal complexation

2021

The combination of complementary, noncovalent interactions is a key principle for the design of multistimuli responsive hydrogels. In this work, an amphiphilic peptide, supramacromolecular hydrogelator which combines metal-ligand coordination induced gelation and thermoresponsive toughening is reported. Following a modular approach, the incorporation of the triphenylalanine sequence FFF into a structural (C3EG ) and a terpyridine-functionalized (C3Tpy ) C3 -symmetric monomer enables their statistical copolymerization into self-assembled, 1D nanorods in water, as investigated by circular dichroism (CD) spectroscopy and transmission electron microscopy (TEM). In the presence of a terpyridine …

Ionschemistry.chemical_classificationCircular dichroism540 Chemistry and allied sciencesPolymers and PlasticsOrganic ChemistryHydrogelsPolyethylene glycolPolyethylene Glycolschemistry.chemical_compoundMonomerchemistryChemical engineeringMetals540 ChemieAmphiphileSelf-healing hydrogelsMaterials ChemistryCopolymerNon-covalent interactionsTerpyridinePeptides
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Radical addition to iminium ions and cationic heterocycles

2014

Carbon-centered radicals represent highly useful reactive intermediates in organic synthesis. Their nucleophilic character is reflected by fast additions to electron deficient C=X double bonds as present in iminium ions or cationic heterocycles. This review covers diverse reactions of preformed or in situ-generated cationic substrates with various types of C-radicals, including alkyl, alkoxyalkyl, trifluoromethyl, aryl, acyl, carbamoyl, and alkoxycarbonyl species. Despite its high reactivity, the strong interaction of the radical’s SOMO with the LUMO of the cation frequently results in a high regioselectivity. Intra- and intermolecular processes such as the Minisci reaction, the Porta react…

Ionsheterocycles540 Chemistry and allied sciencesMinisci reactionphotoredox catalysisPorta reactionReviewradicalsCarbonCatalysislcsh:QD241-441transition metal catalysisModels Chemicaladdition reactionslcsh:Organic chemistryHeterocyclic CompoundsCations540 Chemieiminium saltsrearrangementslate-stage functionalization
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Dynamic Structural Changes and Thermodynamics in Phase Separation Processes of an Intrinsically Disordered–Ordered Protein Model

2021

Elastin-like proteins (ELPs) are biologically important proteins and models for intrinsically disordered proteins (IDPs) and dynamic structural transitions associated with coacervates and liquid-liquid phase transitions. However, the conformational status below and above coacervation temperature and its role in the phase separation process is still elusive. Employing matrix least-squares global Boltzmann-fitting of the circular dichroism spectra of the ELPs (VPGVG) 20 , (VPGVG) 40 and (VPGVG) 60 , we found that coacervation occurs sharply when a certain number of repeat units has acquired β-turn conformation (in our sequence setting a threshold of ~20 repeat units). The differential scatter…

Models Molecular540 Chemistry and allied sciencesPhase transitionCircular dichroismCoacervateProtein ConformationChemistryPhase separation processCircular DichroismSequence (biology)General ChemistryIntrinsically disordered proteinsCircular dichroism spectraCatalysisIntrinsically Disordered Proteins540 ChemieBiophysicsProtein modelHumansThermodynamicsPeptidesAngewandte Chemie International Edition
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Targeting of immune cells with trimannosylated liposomes

2020

PharmacologyLiposome540 Chemistry and allied sciencesbiologyChemistryBiochemistry (medical)Pharmaceutical ScienceMedicine (miscellaneous)Cell biology570 Life sciencesDC-SIGNImmune system540 Chemiebiology.proteinPharmacology (medical)Genetics (clinical)570 Biowissenschaften
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Chemically Fueled Volume Phase Transition of Polyacid Microgels

2021

Abstract Microgels are soft colloids that show responsive behavior and are easy to functionalize for applications. They are considered key components for future smart colloidal material systems. However, so far microgel systems have almost exclusively been studied in classical responsive switching settings using external triggers, while internally organized, autonomous control mechanisms as found in supramolecular chemistry and DNA nanotechnology relying on fuel‐driven out‐of‐equilibrium concepts have not been implemented into microgel systems. Here, we introduce chemically fueled transient volume phase transitions (VPTs) for poly(methacrylic acid) (PMAA) microgels, where the collapsed hydr…

Phase transition540 Chemistry and allied sciencesMaterials scienceSupramolecular chemistry010402 general chemistrydissipative self-assembly01 natural sciencesnonequilibrium processesCatalysismicrogelschemistry.chemical_compoundColloidMicrogels | Hot PaperDNA nanotechnologyfuelsAutonomous controlResearch Articlespolymerschemistry.chemical_classification010405 organic chemistryMaterial systemGeneral ChemistryPolymerGeneral Medicine0104 chemical sciencesChemical engineeringMethacrylic acidchemistry540 ChemieResearch ArticleAngewandte Chemie
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Signal-Processing and Adaptive Prototissue Formation in Metabolic DNA Protocells

2021

Abstract The fundamental life-defining processes in living cells, such as replication, division, adaptation, and tissue formation, take place via intertwined metabolic reaction networks orchestrating downstream signal processing in a confined, crowded environment with high precision. Hence, it is crucial to understand and reenact some of these functions in wholly synthetic cell-like entities (protocells) to envision designing soft-materials with life-like traits. Herein, we report on a programmable all-DNA protocell (PC) composed of a liquid DNA interior and a hydrogel-like shell, harboring DNAzyme active sites in the interior whose catalytic bond-cleaving activity leads to a downstream phe…

ProtocellSignal processing540 Chemistry and allied sciencesMultidisciplinaryDeoxyribozymeProteinsGeneral Physics and AstronomyHydrogelsDNAGeneral ChemistryGeneral Biochemistry Genetics and Molecular BiologyDisplacement reactionschemistry.chemical_compoundchemistry540 ChemieBiophysicsA-DNAArtificial CellsTissue formationRNA CleavageDNA
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Recent advances in the electrochemical reduction of substrates involving N−O Bonds

2020

Reduction (complexity)540 Chemistry and allied sciencesChemistry540 ChemieInorganic chemistrychemistry.chemical_elementGeneral ChemistryElectrochemistryNitrogenOxygen
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Tris(5-aryl-1,3,4-oxadiazolyl)benzotrithiophenes : discotic liquid crystals with enormous mesophase ranges

2021

Trischemistry.chemical_compoundCrystallography540 Chemistry and allied scienceschemistryArylDiscotic liquid crystal540 ChemieOrganic ChemistryX-ray crystallographyMesophasePhysical and Theoretical ChemistryFluorescence
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Crystal structures of pure 3-(4-bromo-2-chloro­phen­yl)-1-(pyridin-4-yl)benzo[4,5]imidazo[1,2-d][1,2,4]triazin-4(3H)-one and contaminated with 3-(4-b…

2017

The side product of the cyclo­condensation reaction between ethyl benzimidazole-2-carboxyl­ate and the nitrile imine of the corresponding hydrazonyl chloride, C20H11BrClN5O, crystallized in two crystal forms. Form (1) is a co-crystal of the target compound (without any chlorine substituent) and a side product containing a Cl atom in position 2 of the bromo­phenyl group, C20H12BrN5O·0.143C20H11BrClN5O. (2) contains the pure side product. The slightly different conformation of the ring systems leads to a different packing of (1) and (2), but both crystal structures are dominated by p-p inter­actions.

benzoimidazolepyridine540 Chemistry and allied sciencescrystal structureCrystallographyQD901-999540 Chemie4-bromo-2-chlorophenyl4-bromo-2-chloro­phen­ylbenzo­imidazole124-triazinoneResearch CommunicationsActa Crystallographica Section E: Crystallographic Communications
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The “green” electrochemical synthesis of periodate

2020

Abstract High‐grade periodate is relatively expensive, but is required for many sensitive applications such as the synthesis of active pharmaceutical ingredients. These high costs originate from using lead dioxide anodes in contemporary electrochemical methods and from expensive starting materials. A direct and cost‐efficient electrochemical synthesis of periodate from iodide, which is less costly and relies on a readily available starting material, is reported. The oxidation is conducted at boron‐doped diamond anodes, which are durable, metal‐free, and nontoxic. The avoidance of lead dioxide ultimately lowers the cost of purification and quality assurance. The electrolytic process was opti…

boron-doped diamond540 Chemistry and allied sciencesMaterials scienceflow chemistryoxidationIodideLead dioxideElectrolysis | Hot Paper010402 general chemistryElectrochemistry01 natural sciencesCatalysislaw.inventionchemistry.chemical_compoundlawelectrolysisElectrolytic processIodatechemistry.chemical_classificationElectrolysis010405 organic chemistryCommunicationPeriodateGeneral ChemistryFlow chemistryCombinatorial chemistryCommunications0104 chemical sciencesperiodatechemistry540 Chemie
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