探花直播 of Cambridge - Baodan Zhao /taxonomy/people/baodan-zhao en New efficiency record set for perovskite LEDs /research/news/new-efficiency-record-set-for-perovskite-leds <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/research/news/crop_96.jpg?itok=0q2J00zq" alt="Artistic impression of the perovskite-polymer heterostructure used in LEDs" title="Artistic impression of the perovskite-polymer heterostructure used in LEDs, Credit: None" /></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>Compared to OLEDs, which are widely used in high-end consumer electronics, the perovskite-based LEDs, developed by researchers at the 探花直播 of Cambridge, can be made at much lower costs, and can be tuned to emit light across the visible and near-infrared spectra with high colour purity.</p> <p> 探花直播researchers have engineered the perovskite layer in the LEDs to show close to 100% internal luminescence efficiency, opening up future applications in display, lighting and communications, as well as next-generation solar cells.</p> <p>These perovskite materials are of the same type as those found to make highly efficient solar cells that could one day replace commercial silicon solar cells. While perovskite-based LEDs have already been developed, they have not been nearly as efficient as conventional OLEDs at converting electricity into light.</p> <p>Earlier hybrid perovskite LEDs, first developed by Professor Sir Richard Friend鈥檚 group at the 探花直播鈥檚 Cavendish Laboratory four years ago, were promising, but losses from the perovskite layer, caused by tiny defects in the crystal structure, limited their light-emission efficiency.</p> <p>Now, Cambridge researchers from the same group and their collaborators have shown that by forming a composite layer of the perovskites together with a polymer, it is possible to achieve much higher light-emission efficiencies, close to the theoretical efficiency limit of thin-film OLEDs. Their <a href="https://www.nature.com/articles/s41566-018-0283-4">results</a> are reported in the journal <em>Nature Photonics</em>.</p> <p>鈥淭his perovskite-polymer structure effectively eliminates non-emissive losses, the first time this has been achieved in a perovskite-based device,鈥 said Dr Dawei Di from Cambridge鈥檚 Cavendish Laboratory, one of the corresponding authors of the paper. 鈥淏y blending the two, we can basically prevent the electrons and positive charges from recombining via the defects in the perovskite structure.鈥</p> <p> 探花直播perovskite-polymer blend used in the LED devices, known as a bulk heterostructure, is made of two-dimensional and three-dimensional perovskite components and an insulating polymer. When an ultra-fast laser is shone on the structures, pairs of electric charges that carry energy move from the 2D regions to the 3D regions in a trillionth of a second: much faster than earlier layered perovskite structures used in LEDs. Separated charges in the 3D regions then recombine and emit light extremely efficiently.</p> <p>鈥淪ince the energy migration from 2D regions to 3D regions happens so quickly, and the charges in the 3D regions are isolated from the defects by the polymer, these mechanisms prevent the defects from getting involved, thereby preventing energy loss,鈥 said Di.</p> <p>鈥 探花直播best external quantum efficiencies of these devices are higher than 20% at current densities relevant to display applications, setting a new record for perovskite LEDs, which is a similar efficiency value to the best OLEDs on the market today,鈥 said Baodan Zhao, the paper鈥檚 first author.</p> <p>While perovskite-based LEDs are beginning to rival OLEDs in terms of efficiency, they still need better stability if they are to be adopted in consumer electronics. When perovskite-based LEDs were first developed, they had a lifetime of just a few seconds. 探花直播LEDs developed in the current research have a half-life close to 50 hours, which is a huge improvement in just four years, but still nowhere near the lifetimes required for commercial applications, which will require an extensive industrial development programme. 鈥淯nderstanding the degradation mechanisms of the LEDs is a key to future improvements,鈥 said Di.</p> <p> 探花直播research was funded by the Engineering and Physical Sciences Research Council (EPSRC) and the European Research Council (ERC).</p> <p><em><strong>Reference:</strong></em><br /> <em>Baodan Zhao et al. 鈥<a href="https://www.nature.com/articles/s41566-018-0283-4">High-efficiency perovskite-polymer bulk heterostructure light-emitting diodes</a>.鈥 Nature Photonics (2018). DOI: 10.1038/s41566-018-0283-4鈥</em></p> <p><strong>A bold response to the world鈥檚 greatest challenge</strong><br /> 探花直播 探花直播 of Cambridge is building on its existing research and launching an ambitious new environment and climate change initiative. <a href="https://www.zero.cam.ac.uk">Cambridge Zero</a> is not just about developing greener technologies. It will harness the full power of the 探花直播鈥檚 research and policy expertise, developing solutions that work for our lives, our society and our biosphere.</p> </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>Researchers have set a new efficiency record for LEDs based on perovskite semiconductors, rivalling that of the best organic LEDs (OLEDs).聽</p> </p></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">Artistic impression of the perovskite-polymer heterostructure used in LEDs</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><a href="http://creativecommons.org/licenses/by/4.0/" rel="license"><img alt="Creative Commons License" src="https://i.creativecommons.org/l/by/4.0/88x31.png" style="border-width: 0px;" /></a><br /> 探花直播text in this work is licensed under a <a href="http://creativecommons.org/licenses/by/4.0/">Creative Commons Attribution 4.0 International License</a>. Images, including our videos, are Copyright 漏 探花直播 of Cambridge and licensors/contributors as identified.聽 All rights reserved. We make our image and video content available in a number of ways 鈥 as here, on our <a href="/">main website</a> under its <a href="/about-this-site/terms-and-conditions">Terms and conditions</a>, and on a <a href="/about-this-site/connect-with-us">range of channels including social media</a> that permit your use and sharing of our content under their respective Terms.</p> </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> Mon, 05 Nov 2018 16:00:56 +0000 sc604 200782 at