skip to content

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

Khalifa University Visit Sparks Graphene Innovation Ambitions

1 May 2026

Image credit: Annette from Pixabay. By Dr Karen Steward The Cambridge Graphene Centre (CGC) recently welcomed Professor Yahya Zweiri , senior director of the Research and Innovation Center for Graphene and 2D Materials at Khalifa University in the United Arab Emirates, for discussions on how universities can be better at...

PIXEurope Workshop Sparks New Momentum for Hybrid Photonics

23 April 2026

Image credit: University of Cambridge By Dr. Karen Steward The PIXEurope project is an ambitious European effort to accelerate the adoption of integrated photonics, tiny, light-based circuits poised to transform everything from data communications to artificial intelligence. By bringing together leading research...

University of Cambridge Spinout CamGraPhIC Secures €211 Million EU-Approved Funding for Graphene Photonic Chips

17 April 2026

CamGraPhIC founders: Marco Romagnoli (left) and Andrea Ferrari (right). Image credit: CamGraPhIC. Cambridge-based university spinout CamGraPhIC has been awarded €211 million (£183 million) in funding from the Italian government after the package received approval from the European Commission. The funding, approved under EU...