探花直播 of Cambridge - Plastic Logic /taxonomy/external-affiliations/plastic-logic en First graphene-based flexible display produced /research/news/first-graphene-based-flexible-display-produced <div class="field field-name-field-news-image field-type-image field-label-hidden"><div class="field-items"><div class="field-item even"><img class="cam-scale-with-grid" src="/sites/default/files/styles/content-580x288/public/news/news/140905-graphene-plastic-logic.gif?itok=3QJMN-a7" alt="Active matrix electrophoretic display incorporating graphene" title="Active matrix electrophoretic display incorporating graphene, Credit: Plastic Logic" /></div></div></div><div class="field field-name-body field-type-text-with-summary field-label-hidden"><div class="field-items"><div class="field-item even"><p> 探花直播partnership between the two organisations combines the graphene expertise of the Cambridge Graphene Centre (CGC), with the transistor and display processing steps that <a href="https://www.e-pi.com/">Plastic Logic</a> has already developed for flexible electronics. This prototype is a first example of how the partnership will accelerate the commercial development of graphene, and is a first step towards the wider implementation of graphene and graphene-like materials into flexible electronics.</p>&#13; <p>Graphene is a two-dimensional material made up of sheets of carbon atoms. It is among the strongest, most lightweight and flexible materials known, and has the potential to revolutionise industries from healthcare to electronics.</p>&#13; <p> 探花直播new prototype is an active matrix electrophoretic display, similar to the screens used in today鈥檚 e-readers, except it is made of flexible plastic instead of glass. In contrast to conventional displays, the pixel electronics, or backplane, of this display includes a solution-processed graphene electrode, which replaces the sputtered metal electrode layer within Plastic Logic鈥檚 conventional devices, bringing product and process benefits.</p>&#13; <p>Graphene is more flexible than conventional ceramic alternatives like indium-tin oxide (ITO) and more transparent than metal films. 探花直播ultra-flexible graphene layer may enable a wide range of products, including foldable electronics. Graphene can also be processed from solution bringing inherent benefits of using more efficient printed and roll-to-roll manufacturing approaches.</p>&#13; <p> 探花直播new 150 pixel per inch (150 ppi) backplane was made at low temperatures (less than 100掳C) using Plastic Logic鈥檚 Organic Thin Film Transistor (OTFT) technology. 探花直播graphene electrode was deposited from solution and subsequently patterned with micron-scale features to complete the backplane.</p>&#13; <p>For this prototype, the backplane was combined with an electrophoretic imaging film to create an ultra-low power and durable display. Future demonstrations may incorporate liquid crystal (LCD) and organic light emitting diodes (OLED) technology to achieve full colour and video functionality. Lightweight flexible active-matrix backplanes may also be used for sensors, with novel digital medical imaging and gesture recognition applications already in development.</p>&#13; <p>鈥淲e are happy to see our collaboration with Plastic Logic resulting in the first graphene-based electrophoretic display exploiting graphene in its pixels鈥 electronics,鈥 said Professor Andrea Ferrari, Director of the Cambridge Graphene Centre. 鈥淭his is a significant step forward to enable fully wearable and flexible devices. This cements the Cambridge graphene-technology cluster and shows how an effective academic-industrial partnership is key to help move graphene from the lab to the factory floor.鈥</p>&#13; <p>鈥 探花直播potential of graphene is well-known, but industrial process engineering is now required to transition graphene from laboratories to industry,鈥 said Indro Mukerjee, CEO of Plastic Logic. 鈥淭his demonstration puts Plastic Logic at the forefront of this development, which will soon enable a new generation of ultra-flexible and even foldable electronics鈥</p>&#13; <p>This joint effort between Plastic Logic and the CGC was also recently boosted by a grant from the UK Technology Strategy Board, within the 鈥榬ealising the graphene revolution鈥 initiative. This will target the realisation of an advanced, full colour, OELD based display within the next 12 months.</p>&#13; <p> 探花直播project is funded by the Engineering and Physical Sciences Research Council (EPSRC) and the EU鈥檚 Graphene Flagship.</p>&#13; </div></div></div><div class="field field-name-field-content-summary field-type-text-with-summary field-label-hidden"><div class="field-items"><div class="field-item even"><p><p>A flexible display incorporating graphene in its pixels鈥 electronics has been successfully demonstrated by the Cambridge Graphene Centre and Plastic Logic, the first time graphene has been used in a transistor-based flexible device.</p>&#13; </p></div></div></div><div class="field field-name-field-content-quote field-type-text-long field-label-hidden"><div class="field-items"><div class="field-item even">This is a significant step forward to enable fully wearable and flexible devices</div></div></div><div class="field field-name-field-content-quote-name field-type-text field-label-hidden"><div class="field-items"><div class="field-item even">Andrea Ferrari</div></div></div><div class="field field-name-field-media field-type-file field-label-hidden"><div class="field-items"><div class="field-item even"><div id="file-62812" class="file file-video file-video-youtube"> <h2 class="element-invisible"><a href="/file/62812">Cambridge Graphene Centre and Plastic Logic</a></h2> <div class="content"> <div class="cam-video-container media-youtube-video media-youtube-1 "> <iframe class="media-youtube-player" src="https://www.youtube-nocookie.com/embed/sn-0_RfYc_8?wmode=opaque&controls=1&rel=0&autohide=0" frameborder="0" allowfullscreen></iframe> </div> </div> </div> </div></div></div><div class="field field-name-field-image-credit field-type-link-field field-label-hidden"><div class="field-items"><div class="field-item even"><a href="/" target="_blank">Plastic Logic</a></div></div></div><div class="field field-name-field-image-desctiprion field-type-text field-label-hidden"><div class="field-items"><div class="field-item even">Active matrix electrophoretic display incorporating graphene</div></div></div><div class="field field-name-field-cc-attribute-text field-type-text-long field-label-hidden"><div class="field-items"><div class="field-item even"><p> 探花直播text in this work is licensed under a <a href="http://creativecommons.org/licenses/by-nc-sa/3.0/">Creative Commons Licence</a>. If you use this content on your site please link back to this page. For image rights, please see the credits associated with each individual image.</p>&#13; <p><a href="http://creativecommons.org/licenses/by-nc-sa/3.0/"><img alt="" src="/sites/www.cam.ac.uk/files/80x15.png" style="width: 80px; height: 15px;" /></a></p>&#13; </div></div></div><div class="field field-name-field-show-cc-text field-type-list-boolean field-label-hidden"><div class="field-items"><div class="field-item even">Yes</div></div></div> Fri, 05 Sep 2014 08:33:28 +0000 sc604 134562 at