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Cambridge Graphene Centre

Research Centre on Graphene, Layered Crystals and Hybrid Nanomaterials
 

Published Patents

 

24. Rolled hetero-structures and method of manufacturing rolled hetero-structures. S. Akhavan, A. T. Najafabadi, I. Goykhman, L. Occhipinti, A.C. Ferrari.  US11869728B2 (2024). (pdf).

23. Treatment of polymer particles. A.C. Ferrari, S.A. Hodge, P.Karagiannidis, Y. Lin. US11753508B2 (2023)(pdf).

22. Transmitters and receivers. A.C. Ferrari, M. Romagnoli, M. Midrio, A. Montanaro, V. Sorianello. US11695479B2 (2023). (pdf).

21. Photodetector. A.C. Ferrari, L. Occhipinti, A. Ruocco. US11616161B2 (2023). (pdf).

20. Perovskite semiconductor devices. A.C. Ferrari, G. Kakavelakis, K. Dimos, C. O'Riada, L. Occhipinti. US20220359824 (2022). (pdf).

19. Rolled hetero-structures and method of manufacturing rolled hetero-structures. S. Akhavan, A.T. Najafabadi, I. Goykhman, L. Occhipinti, A.C. Ferrari. US20220172905 (2022). (pdf).

18. Optical transmitter. A.C. Ferrari, M. Romagnoli, V. Sorianello. US20220149967 (2022). (pdf).

17. Photodetector. A.C. Ferrari, L. Occhipinti, A. Ruocco. US20220005968A1 (2022). (pdf).

16. Layered material based quantum light emitting device. M. Engel, M.B. Steiner, A.C. Ferrari, A. Lombardo, M. Barbone, M. Atature, C. Palacios-Berraquero, D.M. Kara, I. Goykhman. US10903396B1 (2019). (pdf).

15. Laser Device. D. Popa, G. Cerullo, T. Scopigno, D. Polli, A.C. Ferrari. US20200203911A1 (2017). (pdf).

14. Treatment of Polymer Particles. A.C. Ferrari, S.A. Hodge, P. Karagiannidis, Y. Lin. US20200291192A1 (2017). (pdf).

13. Functionalized graphene, preparation method thereof, and polyorganosiloxane. Y. Xu, Y. Lin, S. Hodge, A.C. Ferrari. US20190233702A1 (2017). (pdf).

12. Layered materials and methods for their processing. P. Karagiannidis, S.A. Hodge, A.C. Ferrari, F. Torrisi. WO2017060497A1 (2015). (pdf).

11. An apparatus and a method for detecting photons. T.J. Echtermeyer, E. Lidorikis, A. Colli, J. Kivioja, A.C. Ferrari. US20160254398A1 (2014). (pdf).

10. Functional inks based on layered materials and printed layered materials. F. Torrisi, T. Hasan, F. Bonaccorso, A.C. Ferrari. US9718972B2 (2012). (pdf).

9. Photodetection. A. Colli, T.J. Echtermeyer, A. Eiden, A.C. Ferrari. US8927964B2 (2012). (pdf).

8. Optoelectronic device employing a microcavity including a two-dimensional carbon lattice structure. P. Avouris, M.B. Steiner, M. Engel, R. Krupke, A.C. Ferrari, A. Lombardo. US8610989B2 (2011). (pdf).

7. Graphene-based MIM diode and associated methods. A. Colli, S.A. Awan, A. Lombardo, T.J. Echtermeyer, T. Kulmala, A.C. Ferrari. US9202945B2 (2011). (pdf).

6. Superconducting Materials. F. Giustino, A.C. Ferrari, G. Savini. US20110269629A1 (2010). (pdf).

5. Nanomaterial polymer compositions and uses thereof. O. Rozhin, A.C. Ferrari, W. I. Milne. US8323789B2 (2007). (pdf).

4. Multi-structure nanowire and method of manufacturing the same. J.-H. Park, S.-L. Maeng, R.-M. Park, A.C. Ferrari, A. Fasoli, A. Colli. US20100117058A1 (2007). (pdf).

3. Enhancing performance in ink-jet printed organic semiconductors. P. Beecher, A. Colli, O. Rozhin, P. Servati, A. Fasoli, A.C. Ferrari, A. Flewitt, J. Robertson, W.I. Milne. US20070275498A1 (2006). (pdf).

2. Methods and systems for creating a material with nanomaterials. R. Murphy, O. Rozhin, A.C. Ferrari, J. Robertson, W.I. Milne. US20070275230A1 (2006). (pdf).

1. Optical Nanomaterial Compositions. O. Rozhin, A.C. Ferrari, W. I. Milne. US20110163280A1 (2006). (pdf).

Latest news

A University of Cambridge spin-out company working to improve AI efficiency and bandwidth has raised €25 million in new funding.

26 March 2025

CamGraPhIC - co-founded Professor Andrea Ferrari, Director of the Cambridge Graphene Centre , and Dr Marco Romagnoli of CNIT in Italy - is developing new types of photonic circuits for energy-efficient, high-bandwidth, optical interconnect technology. The investment will support continued innovation in graphene photonics...

Cambridge Graphene Centre Successfully Installs Park NX20 AFM for LMRF, Advancing Nanoscale Research

7 March 2025

On 7 March 2025 , the Cambridge Graphene Centre (CGC) celebrated the successful sign-off of the Park NX20 Atomic Force Microscope (AFM) , a major milestone for the Layered Materials Research Foundry (LMRF) . This state-of-the-art system will significantly enhance CGC’s capabilities in nanoscale material characterization ...

Cambridge Graphene Centre Receives Cutting-Edge AFM Equipment from Park Systems for LMRF Project

31 January 2025

The Cambridge Graphene Centre (CGC) has received a state-of-the-art Atomic Force Microscope (AFM) from Park Systems as part of the Layered Materials Research Foundry (LMRF) project. This advanced AFM system, the NX20 model, is set to enhance research capabilities in the exploration of layered materials, providing critical...