Great result for the University and the University Hospital: all six proposals from Würzburg were approved in the latest round for the awarding of Collaborative Research Centres.
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Great result for the University and the University Hospital: all six proposals from Würzburg were approved in the latest round for the awarding of Collaborative Research Centres.
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Merging Pyrrole with Boron into Versatile Di(2-pyrryl)borane Building Blocks: π-Extension, Polymerization, and Coordination
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Merging Pyrrole with Boron into Versatile Di(2-pyrryl)borane Building Blocks: π-Extension, Polymerization, and Coordination
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On October 9 and 10, this year's congress of the German Society for Boron Neutron Capture Therapy (DGBNCT) took place at the Institute for Sustainable Chemistry & Catalysis with Boron (ICB).
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Am 09. Und 10. Oktober fand im Institut für nachhaltige Chemie & Katalyse mit Bor (ICB) der diesjährige Kongress der Deutschen Gesellschaft für Bor-Neutroneneinfangtherapie DGBNCT statt.
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Poly(p-phenylene phosphaborene): A Modified Poly(p-phenylene vinylene) with π-Conjugated B═P Linkages
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Poly(p-phenylene phosphaborene): A Modified Poly(p-phenylene vinylene) with π-Conjugated B═P Linkages
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BNB-Modified Perylene, Terrylene, and Quaterrylene Diimides: Introduction of the π-Accepting and Aggregation-Suppressing Diborinic Imide Group in Rylene Dyes
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BNB-Modified Perylene, Terrylene, and Quaterrylene Diimides: Introduction of the π-Accepting and Aggregation-Suppressing Diborinic Imide Group in Rylene Dyes
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A Joyful Journey: Tungsten(VI) and Tungsten(V) Fluorides Meet N-Heterocyclic Carbenes and Cyclic (Alkyl)(Amino)Carbenes
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A Joyful Journey: Tungsten(VI) and Tungsten(V) Fluorides Meet N-Heterocyclic Carbenes and Cyclic (Alkyl)(Amino)Carbenes
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Titanium-Mediated Rearrangement of Bis(alkynyl)boranes: B─C Activation versus C─H Activation
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Titanium-Mediated Rearrangement of Bis(alkynyl)boranes: B─C Activation versus C─H Activation
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Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
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Insights into topochemical versus stress-induced high-pressure reactivity of azobenzene by single crystal X-ray diffraction
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