Search Results - "Durr, Maximilian"
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Synthesis and characterization of zinc oxide nanoparticles: application to textiles as UV-absorbers
Published in Journal of nanoparticle research : an interdisciplinary forum for nanoscale science and technology (01-04-2008)“…We report the synthesis and characterization of nanosized zinc oxide particles and their application on cotton and wool fabrics for UV shielding. The…”
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Investigating the Potential of Haptic Props for 3D Object Manipulation in Handheld AR
Published in IEEE transactions on visualization and computer graphics (11-11-2024)“…The manipulation of virtual 3D objects is essential for a variety of handheld AR scenarios. However, the mapping of commonly supported 2D touch gestures to…”
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Solvent-Controlled Polymerization of Molecular Strontium Vanadate Monomers into 1D Strontium Vanadium Oxide Chains
Published in Inorganic chemistry (03-09-2019)“…We report the polymerization of a solvent-stabilized molecular strontium vanadium oxide monomer into infinite 1D chains. Supramolecular polymerization is…”
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Does Perthionitrite (SSNO–) Account for Sustained Bioactivity of NO? A (Bio)chemical Characterization
Published in Inorganic chemistry (05-10-2015)“…Hydrogen sulfide (H2S) and nitric oxide (NO) are important signaling molecules that regulate several physiological functions. Understanding the chemistry…”
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Gold(I) Catalysis at Extreme Concentrations Inside Self-Assembled Nanospheres
Published in Angewandte Chemie International Edition (01-12-2014)“…Homogeneous transition‐metal catalysis is a crucial technology for the sustainable preparation of valuable chemicals. The catalyst concentration is usually…”
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Activation of a High-Valent Manganese–Oxo Complex by a Nonmetallic Lewis Acid
Published in Inorganic chemistry (16-06-2014)“…The reaction of a manganese(V)–oxo porphyrinoid complex with the Lewis acid B(C6F5)3 leads to reversible stabilization of the valence tautomer…”
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A Self-Assembled Molecular Cage for Substrate-Selective Epoxidation Reactions in Aqueous Media
Published in ACS catalysis (06-05-2016)“…Encapsulation of a manganese porphyrin in a self-assembled molecular cage allows catalytic epoxidation of various substrates in 1:1 water/acetonitrile…”
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Aromatic C–F Hydroxylation by Nonheme Iron(IV)–Oxo Complexes: Structural, Spectroscopic, and Mechanistic Investigations
Published in Journal of the American Chemical Society (05-10-2016)“…The synthesis and reactivity of a series of mononuclear nonheme iron complexes that carry out intramolecular aromatic C–F hydroxylation reactions is reported…”
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Switching between Inner- and Outer-Sphere PCET Mechanisms of Small-Molecule Activation: Superoxide Dismutation and Oxygen/Superoxide Reduction Reactivity Deriving from the Same Manganese Complex
Published in Journal of the American Chemical Society (01-02-2017)“…Readily exchangeable water molecules are commonly found in the active sites of oxidoreductases, yet the overwhelming majority of studies on small-molecule…”
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Copper Chloride Catalysis: Do μ4‑Oxido Copper Clusters Play a Significant Role?
Published in Inorganic chemistry (18-04-2016)“…Copper chloride catalysis is a well-established field in organic and inorganic chemistry. However, in most cases a detailed mechanistic understanding of the…”
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Record Broken: A Copper Peroxide Complex with Enhanced Stability and Faster Hydroxylation Catalysis
Published in Chemistry : a European journal (07-09-2017)“…Tyrosinase model systems pinpoint pathways to translating Nature's synthetic abilities for useful synthetic catalysts. Mostly, they use N‐donor ligands which…”
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Redox Behavior of a Dinuclear Ruthenium(II) Complex Bearing an Uncommon Bridging Ligand: Insights from High-Pressure Electrochemistry
Published in Inorganic chemistry (18-12-2017)“…A dinuclear ruthenium complex bridged by 2,3,5,6-pyrazinetetracarboxylic acid (μ-LH2 2–) was synthesized and characterized by X-ray crystallography, cyclic…”
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Discovery and Characterization of Biased Allosteric Agonists of the Chemokine Receptor CXCR3
Published in Journal of medicinal chemistry (10-03-2016)“…In this work we report a design, synthesis, and detailed functional characterization of unique strongly biased allosteric agonists of CXCR3 that contain…”
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Direct Observation of a Nonheme Iron(IV)–Oxo Complex That Mediates Aromatic C–F Hydroxylation
Published in Journal of the American Chemical Society (01-10-2014)“…The synthesis of a pentadentate ligand with strategically designed fluorinated arene groups in the second coordination sphere of a nonheme iron center is…”
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Efficient Biomimetic Hydroxylation Catalysis with a Bis(pyrazolyl)imidazolylmethane Copper Peroxide Complex
Published in Chemistry : a European journal (01-12-2015)“…Bis(pyrazolyl)methane ligands are excellent components of model complexes used to investigate the activity of the enzyme tyrosinase. Combining the N donors…”
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Frontispiece: Record Broken: A Copper Peroxide Complex with Enhanced Stability and Faster Hydroxylation Catalysis
Published in Chemistry : a European journal (07-09-2017)“…Bis(pyrazolyl)methane copper peroxide complexes display tyrosinase‐like catalytic phenol hydroxylation activity. An exchange of the pyridinyl unit (background)…”
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Ligands with Two Different Binding Sites and O2 Reactivity of their Copper(I) Complexes
Published in European journal of inorganic chemistry (01-09-2016)“…The synthesis of two new unsymmetric dinucleating ligand systems, L1, combining a bidentate binding site with a tridentate binding site linked through a…”
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Aggregation of a Crown Ether Decorated Zinc–Phthalocyanine by Collision-Induced Desolvation of Electrospray Droplets
Published in The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory (19-11-2015)“…The aggregation of phthalocyanines is well-known in solution but has never before been studied in the gas phase. We investigated the tetra-[18]crown-6 ether…”
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Nitrogen Oxide Atom-Transfer Redox Chemistry; Mechanism of NO(g) to Nitrite Conversion Utilizing μ‑oxo Heme-FeIII–O–CuII(L) Constructs
Published in Journal of the American Chemical Society (14-05-2015)“…While nitric oxide (NO, nitrogen monoxide) is a critically important signaling agent, its cellular concentrations must be tightly controlled, generally through…”
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