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27 results on '"Timpel M."'

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7. 2D-MoS2 goes 3D: transferring optoelectronic properties of 2D MoS2 to a large-area thin film

8. Collective molecular switching in hybrid superlattices for light-modulated two-dimensional electronics

10. Functionalization of SiC/SiOx nanowires with a porphyrin derivative: a hybrid nanosystem for X-ray induced singlet oxygen generation (vol 2, pg 165, 2017)

11. Functionalization of SiC/SiOx nanowires with a porphyrin derivative: a hybrid nanosystem for X-ray induced singlet oxygen generation

12. Correction: Functionalization of SiC/SiOx nanowires with a porphyrin derivative: a hybrid nanosystem for X-ray induced singlet oxygen generation

14. Tuning the work function of graphene-on-quartz with a high weight molecular acceptor

15. Tuning the Work Function of Graphene-on-Quartz with a High Weight Molecular Acceptor

18. Controlled Carboxylic Acid-Functionalized Silicon Nitride Surfaces through Supersonic Molecular Beam Deposition.

19. Enhancement of X-ray-Excited Red Luminescence of Chromium-Doped Zinc Gallate via Ultrasmall Silicon Carbide Nanocrystals.

20. Tailoring Superconductivity in Large-Area Single - Layer NbSe 2 via Self-Assembled Molecular Adlayers.

21. Boosting and Balancing Electron and Hole Mobility in Single- and Bilayer WSe 2 Devices via Tailored Molecular Functionalization.

22. Versatile and Scalable Strategy To Grow Sol-Gel Derived 2H-MoS 2 Thin Films with Superior Electronic Properties: A Memristive Case.

23. Publisher Correction: Collective molecular switching in hybrid superlattices for light-modulated two-dimensional electronics.

24. A novel combined experimental and multiscale theoretical approach to unravel the structure of SiC/SiO x core/shell nanowires for their optimal design.

25. Electronic structure of CuTPP and CuTPP(F) complexes: a combined experimental and theoretical study II.

26. Tuning the Electronic Structure of Graphene by Molecular Dopants: Impact of the Substrate.

27. Energy-Level Engineering at ZnO/Oligophenylene Interfaces with Phosphonate-Based Self-Assembled Monolayers.

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