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Nov4

1. “Efficient broadband conversion via quantum dots with built-in charge,” A. A. Sergeev, K. Sablon, N. Vagidov, J. Little, and V. Mitin,  Nanotech 2013 - Nanotechnology Conference and Expo, May 12-16, 2013, Washington, DC, Book of abstracts, p. 3.

2. “Quantum dot nanomaterial for efficient broadband photovoltaic conversion,” V. Mitin, Advanced Energy 2013, New York, NY, April 30 – May 1, 2013.

3. “Photoelectron kinetics in nanomaterials with charged dots: Physics and applications”, V. Mitin, A. Sergeev, N. Vagidov, K. Sablon, M. Yakimov, and S. Oktyabrsky, Invited talk at the 7th International Conference on Surfaces, Coatings and Nanostructured Materials (Nanosmat), 18-21 September 2012, Prague, Technical Program, p.14, Talk Nano-108.

4. “Engineering of 3-D barriers by charging quantum dots for effective broadband photovoltaic conversion,” K.A. Sablon, J.W. Little, V. Mitin, A. Sergeev, N. Vagidov, and K. Reinhardt, 2012 Advanced Workshop: Future Trends in Microelectronics, June 24-29, 2012, Corsica, France, Book of abstracts p. 34.

5. “Improvement of QDIP performance due to quantum dots with build-in-charge,” V. Mitin, A. Sergeev, N. Vagidov, and S. Birner, Quantum Structure Infrared Photodetector International Conference, QSIP 2012, June 17-23, 2012, Cargese, Corsica, France, Book of abstracts p. 29.

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Jul6

 “Improvement of QDIP performance due to quantum dots with built-in charge”, V. Mitin, A Sergeev, N. Vagidov and S. Birner, Infrared Phys. and Technol., Vol. 59, pp. 84-88, 2013.

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Feb6

“Charged quantum dots for high efficiency photovoltaics and IR sensing,” A. Sergeev, N. Vagidov, V. Mitin, and K. Sablon, in Future Trends in Microelectronics, Editors S. Luryi, J. Xu, and A. Zaslavsky, Wiley-IEEE Press, 2013, pp. 244 – 253.

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Jan6

1. “Quantum dot structures for efficient photovoltaic conversion, and methods of using and making the same,” K. A. Sablon, J. W. Little, V. Mitin, A. Sergeev, N. Vagidov, and K. Reinhardt, filed as a regular patent on July 26, 2012, PCT/US12/048279.

2. “Vertically correlated clusters of charged quantum dots for optoelectronic devices, and methods of making same,” V. Mitin, A. Sergeev, and G. Strasser, filed as a regular patent on March 27, 2012, PCT/US 13/430855.

3. “Photovoltaic cells with quantum dots with built-in charge and methods of making same,”   K. A. Sablon, J.W. Little, V. Mitin, A. Sergeev, N. Vagidov, and K. Reinhardt, filed as a regular patent on January 19, 2012, PCT/US12/021847.

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Jan20

EE SUNY Distinguished Professor Vladimir Mitin, RF SUNY Research Associate Professor Andrei Sergeev, and EE Assistant Professor Nizami Vagidov, working together as OptoElectronic Devices (OPEN) LLC researchers, are developing unique quantum dot nanomaterials that combine strong generation of photocarriers by infrared radiation and long photoelectron lifetime.

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