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11%OFFMario Caironi - Large Area and Flexible Electronics - 9783527336395 - V9783527336395
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Large Area and Flexible Electronics

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Description for Large Area and Flexible Electronics Hardback. From materials to applications, this one-stop reference covers the entire value chain from fundamentals via processing right up to devices, presenting different approaches to large-area electronics, thus enabling readers to compare materials, properties and performance. Num Pages: 592 pages. BIC Classification: TJFD. Category: (P) Professional & Vocational. Dimension: 256 x 176 x 33. Weight in Grams: 1408.
From materials to applications, this ready reference covers the entire value chain from fundamentals via processing right up to devices, presenting different approaches to large-area electronics, thus enabling readers to compare materials, properties and performance.
Divided into two parts, the first focuses on the materials used for the electronic functionality, covering organic and inorganic semiconductors, including vacuum and solution-processed metal-oxide semiconductors, nanomembranes and nanocrystals, as well as conductors and insulators. The second part reviews the devices and applications of large-area electronics, including flexible and ultra-high-resolution displays, light-emitting transistors, organic and inorganic photovoltaics, large-area imagers and sensors, non-volatile memories and ... Read more

Product Details

Format
Hardback
Publication date
2015
Publisher
Wiley-VCH Verlag GmbH Germany
Number of pages
592
Condition
New
Number of Pages
592
Place of Publication
Berlin, Germany
ISBN
9783527336395
SKU
V9783527336395
Shipping Time
Usually ships in 4 to 8 working days
Ref
99-1

About Mario Caironi
Mario Caironi is a Tenure Track Researcher at the Center for Nano Science and Technology (CNST) in Milan, Italy, of the Istituto Italiano di Tecnologia. He obtained his PhD in 2007 from the "Politecnico di Milano" and then joined Prof. Henning Sirringhaus' group at the Cavendish Laboratory in Cambridge, UK, to work on inkjet-printed, downscaled organic field-effect transistors (OFET) and ... Read more

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