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33 results on '"Andreas Fery"'

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1. Kinetically controlled metal-elastomer nanophases for environmentally resilient stretchable electronics

2. Gold Nanoparticles with N‐Heterocyclic Carbene/Triphenylamine Surface Ligands: Stable and Electrochromically Active Hybrid Materials for Optoelectronics

3. Nominally identical microplastic models differ greatly in their particle-cell interactions

4. Hierarchical conductive metal-organic framework films enabling efficient interfacial mass transfer

5. Integrated FRET Polymers Spatially Reveal Micro‐ to Nanostructure and Irregularities in Electrospun Microfibers

6. Nano meets macro: Furnishing the surface of polymer molds with gold‐nanoparticle arrays

7. Advanced Colloidal Sensors Enabled by an Out‐of‐Plane Lattice Resonance

8. Constrained thermoresponsive polymers – new insights into fundamentals and applications

9. Heading toward Miniature Sensors: Electrical Conductance of Linearly Assembled Gold Nanorods

11. Molecular Transport within Polymer Brushes: A FRET View at Aqueous Interfaces

12. Block Copolymer Template-Directed Catalytic Systems: Recent Progress and Perspectives

13. Wafer-sized multifunctional polyimine-based two-dimensional conjugated polymers with high mechanical stiffness

14. Multifunctional layered magnetic composites

21. Soft X-ray induced modifications of PVA-based microbubbles in aqueous environment: a microspectroscopy study.

28. Self-Assembly and Cross-Linking of Bionanoparticles at Liquid–Liquid InterfacesThis work was supported by the DOE (DE-FG-02-96ER45 and DE-FG02-04ER46126), the NSF for MRSEC at UMass Amherst (DMR 9400488), the Army Research Laboratory through the MURI program, the Max Planck Society, the DFG within the French–German Network on Complex Fluids, and the MAX KADE Foundation. This work benefited from Argonne's Advanced Photon Source (15-ID) and Intense Pulsed Neutron Source supported by the US Department of Energy, Basic Energy Sciences, Office of Science, under contract no. W-31-109-Eng-38. ChemMatCARS Sector 15 is principally supported by the National Science Foundation/Department of Energy under grant no. CHE0087817 and by the Illinois Board of Higher Education. Q.W. thanks the University of South Carolina and USC Nanocenter for financial support. A.F. and P.C. thank Helmuth Möhwald for stimulating discussions.

31. Single-colloidal-particle microcontact printingElectronic supplementary information (ESI) available: Preparation of probe and substrate, instrumental details, materials. See DOI: 10.1039/b708722e.

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