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Carbonaceous Dye-Sensitized Solar Cell Photoelectrodes.

Annamaria Petrozza was awarded a Master of Science in Electronic Engineering (emphasis on Devices, design and modelling) at Ecole Supèrieure d’Electricité (Paris, France) in 2003 under the T.I.M.E. (Top Industrial Manager in Europe) program. In 2004 she got a Master degree in Electronic Engineering (emphasis on Optoelectronics) at Politecnico of Milan with a thesis carried out at the Cavendish Laboratory of the University of Cambridge (UK) on the optical characterisation of a class of organic semiconductors with a supramolecular architecture for Organic Light Emitting Diodes. The research work was under the supervision of Prof. C. Cacialli and Prof. C. Silva. In 2008 she received her PhD in Physics from the University of Cambridge (UK) with a thesis on the study of optoelectronic processes at organic and hybrid semico nductors interfaces under the supervision of Dr. J.S. Kim and Prof Sir R.H. Friend. From July 2008 to December 2009 she worked as research scientist at the Sharp Laboratories of Europe, Ltd on the development of new market competitive solar cell technologies (Dye Sensitized Solar cells/Colloidal Quantum Dots Sensitized Solar cells). Her main tasks were to establish key needs of PV market, write research proposals to submit to the Sharp Business Group, and design and implement experiments. Since January 2010 she has a Team Leader position at the Center for Nano Science and Technology -IIT@POLIMI. She is in charge of the development of photovoltaic devices and their characterization by time-resolved and cw Photoinduced Absorption Spectroscopy, Time-resolved Photoluminescence and electrical measurements. Her research work mainly aims to shed light on interfacial optoelectronic mechanisms, which are fundamental for the optimization of operational processes, with the goal of improving device efficiency and stability.

Nitrogen-Doped CNx/CNTs Heteroelectrocatalysts for Highly Efficient Dye-Sensitized Solar Cells.

Sulfur-Doped Graphene with Iron Pyrite (FeS2) as an Efficient and Stable Electrocatalyst for the Iodine Reduction Reaction in Dye-Sensitized Solar Cells.

Single walled carbon nanotube network electrodes for dye solar cells.

Incorporation of graphene into SnO 2 photoanodes for dye-sensitized solar cells.

After completing Master's Degree, he joined Raman Research Institute, Bangaluru as a Visiting Student( VSP) to work in the field of 'Dye Sensitized Solar Cells: Synthesis of Squaraine Dyes and Fabrication of DSSc' under the Guidance of Prof.

Lukas Schmidt-Mende is full professor in the Department of Physics at the University of Konstanz, Germany, where he is leading the Hybrid nanostructures group. He has experience in organic, dye-sensitized, and hybrid solar cells. He received his Ph.D. in the Prof. Sir Richard Friends Optoelectronics group. Later, he joined Prof. Michael Grätzel to work on solid-state, dye-sensitized solar cells. He has also worked in the Material Science Department at the University of Cambridge, UK, and in the Department of Physics at the Ludwig-Maximilians University in Munich. His current research is in nanostructured materials for energy conversion, with a focus on the device physics of organic and hybrid solar cells.

Dye-sensitized solar cell - Wikipedia

Tin Oxide Light-Scattering Layer for Titania Photoanodes in Dye-Sensitized Solar Cells.

Example, the US Department of Energy generally restricts. The semiconductor nanostructures are hence proposed to combine with the organic materi. Nserc Research proposal Ryerson University harvesting organic dyes within the dye-sensitized solar cell (dssc) manifold. MBA Projects, MBA Project Free from m, Samples BBA Training Reports, Free MBA Sample Projects/Synopsis, Final Management Research MBA BBA. Essay empire phone number of natural sources and functions of organic nutrients, amino acids, carbohydrates, fatty acids, fibre and vitamins). Ijmra, international journal of Management, IT and Engineering, international journal of marketing and Technology, international journals. HQP allocations (PDF, PhD, MSc and BSc) for the discovery grant period. From dye-sensitized to perovskite solar cells. Excluding nearby volcanic disasters, what.

Anders Hagfeldt is Professor in Physical Chemistry and the Dean of Chemistry at Uppsala University, as well as Director of the Center for Molecular Devices (CMD). He obtained his Ph.D. at Uppsala University in 1993 and was a post-doc with Prof. Michael Grätzel (1993-1994) at EPFL, Switzerland. His research focuses on the field of mesoporous dye-sensitized solar cells, specifically physical chemical characterization of mesoporous electrodes for different types of opto-electronic devices. He has published more than 260 scientific papers that have received over 20,000 citations (with an h-index of 67), and has 8 patent applications. He was ranked number 46 on a list of the top 100 material scientists of the past decade by Times Higher Education. He is a member of the Royal Society of Sciences in Uppsala (founded 1710), and the Royal Swedish Academy of Engineering Sciences in Stockholm. He is a visiting professor at Nanyang Technological University, Singapore, and a Fellow Professor at Sungkyankwan University, Korea.

A TiO2 Nanofiber–Carbon Nanotube-Composite Photoanode for Improved Efficiency in Dye-Sensitized Solar Cells.
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