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High-performance green semiconductor devices: materials, designs, and fabrication

机译:高性能绿色半导体器件:材料,设计和制造

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From large industrial computers to non-portable home appliances and finally to light-weight portable gadgets, the rapid evolution of electronics has facilitated our daily pursuits and increased our life comforts. However, these rapid advances have led to a significant decrease in the lifetime of consumer electronics. The serious environmental threat that comes from electronic waste not only involves materials like plastics and heavy metals, but also includes toxic materials like mercury, cadmium, arsenic, and lead, which can leak into the ground and contaminate the water we drink, the food we eat, and the animals that live around us. Furthermore, most electronics are comprised of non-renewable, non-biodegradable, and potentially toxic materials. Difficulties in recycling the increasing amount of electronic waste could eventually lead to permanent environmental pollution. As such, discarded electronics that can naturally degrade over time would reduce recycling challenges and minimize their threat to the environment. This review provides a snapshot of the current developments and challenges of green electronics at the semiconductor device level. It looks at the developments that have been made in an effort to help reduce the accumulation of electronic waste by utilizing unconventional, biodegradable materials as components. While many semiconductors are classified as non-biodegradable, a few biodegradable semiconducting materials exist and are used as electrical components. This review begins with a discussion of biodegradable materials for electronics, followed by designs and processes for the manufacturing of green electronics using different techniques and designs. In the later sections of the review, various examples of biodegradable electrical components, such as sensors, circuits, and batteries, that together can form a functional electronic device, are discussed and new applications using green electronics are reviewed.
机译:从大型工业计算机到非便携式家用电器,再到轻便的便携式小工具,电子产品的迅速发展促进了我们的日常追求并增加了我们的生活舒适度。但是,这些迅速的发展已导致消费电子产品的使用寿命大大缩短。电子废物造成的严重环境威胁不仅涉及塑料和重金属之类的物质,还包括汞,镉,砷和铅等有毒物质,这些物质可能泄漏到地下并污染我们饮用的水和食物吃,还有我们周围的动物。此外,大多数电子产品都由不可再生,不可生物降解和潜在有毒的材料组成。越来越多的电子废物难以回收利用,最终可能导致永久性的环境污染。这样,随着时间的流逝自然会退化的废弃电子产品将减少回收方面的挑战,并将对环境的威胁降至最低。这篇综述简要介绍了绿色电子在半导体器件层面的发展和挑战。它着眼于通过利用非常规的,可生物降解的材料作为成分来帮助减少电子废物积累的努力。尽管许多半导体被归类为不可生物降解的,但仍存在一些可生物降解的半导体材料并将其用作电子组件。本文首先讨论了电子可生物降解材料,然后讨论了使用不同技术和设计制造绿色电子产品的设计和工艺。在本文的后续部分中,将讨论可一起构成功能电子设备的可生物降解电子组件(例如传感器,电路和电池)的各种示例,并对使用绿色电子产品的新应用进行综述。

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