Search Results - "Rohde, Jan"
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Intrinsic properties and reactivities of mononuclear nonheme iron–oxygen complexes bearing the tetramethylcyclam ligand
Published in Coordination chemistry reviews (15-01-2013)“…► FeIVO, FeIII (η2O2), and FeIIIO2H complexes having a common ligand environment. ► Models of intermediates in oxygen activation by mononuclear nonheme iron…”
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2
Nickel-Catalyzed Azide–Alkyne Cycloaddition To Access 1,5-Disubstituted 1,2,3-Triazoles in Air and Water
Published in Journal of the American Chemical Society (06-09-2017)“…Transition-metal-catalyzed or metal-free azide–alkyne cycloadditions are methods to access 1,4- or 1,5-disubstituted 1,2,3-triazoles. Although the…”
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Rapid access to polycyclic N-heteroarenes from unactivated, simple azines via a base-promoted Minisci-type annulation
Published in Nature communications (03-05-2022)“…Conventional synthetic methods to yield polycyclic heteroarenes have largely relied on metal-mediated arylation reactions requiring pre-functionalised…”
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4
Annulative π‑Extension of Unactivated Benzene Derivatives through Nondirected C–H Arylation
Published in Organic letters (06-09-2019)“…Annulative π-extension chemistry provides a concise synthetic route to polycyclic arenes. Herein, we disclose a nondirected annulation approach of unactivated…”
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5
Organic Radical-Linked Covalent Triazine Framework with Paramagnetic Behavior
Published in ACS nano (28-05-2019)“…The production of multifunctional pure organic materials that combine different sizes of pores and a large number of electron spins is highly desirable due to…”
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6
RTEL1 contributes to DNA replication and repair and telomere maintenance
Published in Molecular biology of the cell (15-07-2012)“…Telomere maintenance and DNA repair are important processes that protect the genome against instability. mRtel1, an essential helicase, is a dominant factor…”
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7
Chemoselective Trifluoroethylation Reactions of Quinazolinones and Identification of Photostability
Published in Journal of organic chemistry (07-06-2019)“…Herein, we report chemoselective trifluoroethylation routes of unmasked 2-arylquinazolin-4(3H)-ones using mesityl(2,2,2-trifluoroethyl)iodonium triflate at…”
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8
A Universal Aptamer Chimera for the Delivery of Functional microRNA-126
Published in Nucleic acid therapeutics (01-06-2015)“…microRNAs (miRs) regulate vascular diseases such as atherosclerosis and cancer. miR-126 is important for endothelial cell signaling and promotes angiogenesis,…”
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9
The MOSAiC ice floe: sediment-laden survivor from the Siberian shelf
Published in The cryosphere (06-07-2020)“…In September 2019, the research icebreaker Polarstern started the largest multidisciplinary Arctic expedition to date, the MOSAiC (Multidisciplinary drifting…”
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10
Crystallographic and Spectroscopic Characterization of a Nonheme Fe(IV)=O Complex
Published in Science (American Association for the Advancement of Science) (14-02-2003)“…Following the heme paradigm, it is often proposed that dioxygen activation by nonheme monoiron enzymes involves an iron(IV)=oxo intermediate that is…”
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11
Axial Ligand Effects on the Geometric and Electronic Structures of Nonheme Oxoiron(IV) Complexes
Published in Journal of the American Chemical Society (17-09-2008)“…A series of complexes [FeIV(O)(TMC)(X)]+ (where X = OH−, CF3CO2 −, N3 −, NCS−, NCO−, and CN−) were obtained by treatment of the well-characterized nonheme…”
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12
Reaction of a Redox-Active Ligand Complex of Nickel with Dioxygen Probes Ligand-Radical Character
Published in Journal of the American Chemical Society (04-11-2009)“…Bis(imino)pyridine complex [Ni{2,6-(ArNCMe)2C5H3N}Cl] (where Ar = 2,6- i Pr2C6H3) was synthesized by reduction of the corresponding dichloride complex and…”
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13
The Reaction of a High-Valent Nonheme Oxoiron(IV) Intermediate with Hydrogen Peroxide
Published in Angewandte Chemie International Edition (29-05-2012)“…An FeIVO group meets with H2O2! Reaction of high‐valent iron with the reactive oxygen species (ROS) hydrogen peroxide (H2O2) is in general reserved for heme…”
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14
Guanidinato Complexes of Iridium: Ligand-Donor Strength, O2 Reactivity, and (Alkene)peroxoiridium(III) Intermediates
Published in Inorganic chemistry (04-03-2013)“…A series of seven [Ir{ArNC(NR2)NAr}(cod)] complexes (1a–1g; where R = Me or Et; Ar = Ph, 4-MeC6H4, 4-MeOC6H4, 2,6-Me2C6H3, or 2,6- i Pr2C6H3; and cod =…”
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15
Stabilization of Iridium(IV) by Monoanionic Dialkyldiarylguanidinato Ligands
Published in Journal of the American Chemical Society (08-07-2009)“…Electron-rich tris(guanidinato) complexes of IrIII, [Ir{ArNC(NR2)NAr}3] (where R = Me or Et; Ar = Ph or 4-MeC6H4), were synthesized from the respective…”
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Nonheme Oxoiron(IV) Complexes of Tris(2-pyridylmethyl)amine with cis-Monoanionic Ligands
Published in Inorganic chemistry (07-08-2006)“…Treatment of [FeIV(O)(TPA)(NCMe)](CF3SO3)2 [TPA, N,N,N-tris(2-pyridylmethyl)amine] with 3 equiv of NR4X (X = CF3CO2, Cl, or Br) in MeCN at −40 °C affords a…”
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17
Reaction of an Oxoiron(IV) Complex with Nitrogen Monoxide: Oxygen Atom or Oxide(•1–) Ion Transfer?
Published in Inorganic chemistry (06-06-2011)“…Reaction of [FeO(tmc)(OAc)]+ with the free radical nitrogen monoxide afforded a mixture of two FeII complexes, [Fe(tmc)(OAc)]+ and [Fe(tmc)(ONO)]+ (where tmc =…”
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18
Expression of recombinant staphylokinase in the methylotrophic yeast Hansenula polymorpha
Published in BMC biotechnology (19-12-2012)“…Currently, the two most commonly used fibrinolytic agents in thrombolytic therapy are recombinant tissue plasminogen activator (rt-PA) and streptokinase (SK)…”
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End-On and Side-On Peroxo Derivatives of Non-Heme Iron Complexes with Pentadentate Ligands: Models for Putative Intermediates in Biological Iron/Dioxygen Chemistry
Published in Inorganic chemistry (21-04-2003)“…Mononuclear iron(III) species with end-on and side-on peroxide have been proposed or identified in the catalytic cycles of the antitumor drug bleomycin and a…”
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20
Self-interaction of a SNARE Transmembrane Domain Promotes the Hemifusion-to-fusion Transition
Published in Journal of molecular biology (15-12-2006)“…SNARE proteins mediate intracellular fusion of eukaryotic membranes. Some SNAREs have previously been shown to dimerise via interaction of their transmembrane…”
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