Impurities in Arylboronic Esters Induce Persistent Afterglow
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Impurities in Arylboronic Esters Induce Persistent Afterglow
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Regioregular Poly(p-phenylene iminoborane): A Strictly Alternating BN-Isostere of Poly(p-phenylene vinylene) with Stimuli-Responsive Behavior
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Impurities in Arylboronic Esters Induce Persistent Afterglow
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Radical anions of 1,1-azoliumdithiocarboxylates
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Radical anions of 1,1-azoliumdithiocarboxylates
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Antibacterial activity of Au(I), Pt(II), and Ir(III) biotin conjugates prepared by the iClick reaction: influence of the metal coordination sphere on the biological activity
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Tuning The Intracellular Distribution of [3+2+1] Iridium(III) Complexes In Bacterial And Mammalian Cells By iClick Reaction With Biomolecular Carriers Functionalized With Alkynone Groups
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Hybrid materials comprising ferrocene and diaminoborane moieties: linear concatenation versus macrocyclization
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Hybrid materials comprising ferrocene and diaminoborane moieties: linear concatenation versus macrocyclization
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Construction of a Boron Chain on a Single Metal by Dehydrocoupling of Borane Ligands
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Construction of a Boron Chain on a Single Metal by Dehydrocoupling of Borane Ligands
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Producing fertilisers and other nitrogen compounds more sustainably: Würzburg chemistry professor Holger Braunschweig has laid the foundations for this goal. He has now been awarded the prestigious Eni Prize for his achievements.
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Düngemittel und andere Stickstoffverbindungen nachhaltiger produzieren: Dafür hat der Würzburger Chemieprofessor Holger Braunschweig die Basis gelegt. Für seine Leistung erhält er nun den renommierten Eni-Preis.
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Der emeritierte Würzburger Chemieprofessor Helmut Werner feierte am 19. April 2024 seinen 90. Geburtstag. Zu seinen Ehren veranstaltete das Institut für Anorganische Chemie am 17. Mai 2024 ein Festkolloquium, um sein wissenschaftliches Werk zu ehren und DANKE zu sagen.
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Taming the Biological Activity of Pd(II) and Pt(II) Complexes with Triazolato “Protective” Groups: 1H, 77Se Nuclear Magnetic Resonance and X-ray Crystallographic Model Studies with Selenocysteine to Elucidate Differential Thioredoxin Reductase Inhibition
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