Adrian Ruff
0000-0001-5659-8556
Ruhr-Universität-Bochum
35 papers found
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Light-Controlled Morphologies of Self-Assembled Triarylamine-Fullerene Conjugates
Redox behaviour of some asymmetrically substituted viologens and an alkyl bridged bis-viologen in non-aqueous solvents: a voltammetric and spectroscopic investigation
A Detailed Analysis of Multiple Photoreactions in a Light-Harvesting Molecular Triad with Overlapping Spectra by Utrafast Spectroscopy
Branched polythiophenes by Ni-catalyzed Kumada coupling
Dithienosilole-based all-conjugated block copolymers synthesized by a combination of quasi-living Kumada and Negishi catalyst-transfer polycondensations
Stepwise Solid-Phase Synthesis and Solid- State Electrochemistry of Redox-Active Viologen Core/Shell-Structured Modified Silica Materials
Electropolymerized Three-Dimensional Randomly Branched EDOT-Containing Copolymers
[6,6]-Open and [6,6]-Closed Isomers of C70(CF2): Synthesis, Electrochemical and Quantum Chemical Investigation
Erratum to: Redox-active silica nanoparticles. Part 6. Synthesis and spectroscopic and electrochemical characterization of viologen-modified Stöber silica particles with diameters of approximately 125 nm
Redox-active silica nanoparticles. Part 7. Redox behavior of core/shell structured viologen modified silica particles immobilized at paraffin impregnated graphite electrodes
Two-electron-transfer redox systems. Part 8. Proving the electron stoichiometry for the electrochemical two-electron oxidation of N,N '-bis(ferrocenoyl)-1,2-diaminoethane
Anti-[2.2](1,4)pentacenophane: A Covalently Coupled Pentacene Dimer
Redox-active silica nanoparticles. Part 6. Synthesis and spectroscopic and electrochemical characterization of viologen-modified Stober silica particles with diameters of approximately 125 nm
Stober silica particles as basis for redox modifications: Particle shape, size, polydispersity, and porosity
Consistent diffusion coefficients of ferrocene in some non-aqueous solvents: electrochemical simultaneous determination together with electrode sizes and comparison to pulse-gradient spin-echo NMR results
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