McCulloch Iain, Chabinyc Michael, Brabec Christoph, Nielsen Christian Bech, Watkins Scott Edward
Department of Chemistry, University of Oxford, Oxford, UK.
KAUST Solar Center, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.
Nat Mater. 2023 Nov;22(11):1304-1310. doi: 10.1038/s41563-023-01579-0. Epub 2023 Jun 19.
The development of organic electronic applications has reached a critical point. While markets, including the Internet of Things, transparent solar and flexible displays, gain momentum, organic light-emitting diode displays lead the way, with a current market size of over $25 billion, helping to create the infrastructure and ecosystem for other applications to follow. It is imperative to design built-in sustainability into the materials selection, processing and device architectures of all of these emerging applications, and to close the loop for a circular approach. In this Perspective, we evaluate the status of embedded carbon in organic electronics, as well as options for more sustainable materials and manufacturing, including engineered recycling solutions that can be applied within the product architecture and at the end of life. This emerging industry has a responsibility to ensure a 'cradle-to-cradle' approach. We highlight that ease of dismantling and recycling needs to closely relate to the product lifetime, and that regeneration should be facilitated in product design. Materials choices should consider the environmental effects of synthesis, processing and end-product recycling as well as performance.
有机电子应用的发展已达到关键节点。在包括物联网、透明太阳能和柔性显示器等市场蓬勃发展之际,有机发光二极管显示器处于领先地位,当前市场规模超过250亿美元,助力为后续其他应用构建基础设施和生态系统。在所有这些新兴应用的材料选择、加工及器件架构中设计内在的可持续性,并采用循环利用方法实现闭环,这势在必行。在此观点文章中,我们评估了有机电子中嵌入式碳的现状,以及更具可持续性的材料和制造的选择,包括可应用于产品架构及产品寿命终结时的工程化回收解决方案。这个新兴产业有责任确保采用“从摇篮到摇篮”的方法。我们强调,拆解和回收的简易程度需要与产品寿命紧密相关,并且应在产品设计中促进再生。材料选择应考虑合成、加工及最终产品回收对环境的影响以及性能。