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Poly(lactic acid)-Based Ink for Biodegradable Printed Electronics With Conductivity Enhanced through Solvent Aging

机译:聚(乳酸)基于可生物降解印刷电子器件的油墨,通过溶剂老化增强导电性

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摘要

Biodegradable electronics is a rapidly growing field, and the development of controllably biodegradable, high-conductivity materials suitable for additive manufacturing under ambient conditions remains a challenge. In this report, printable conductive pastes that employ poly(lactic acid) (PLA) as a binder and tungsten as a conductor are demonstrated. These composite conductors can provide enhanced stability in applications where moisture may be present, such as environmental monitoring or agriculture. Post-processing the printed traces using a solvent-aging technique increases their conductivity by up to 2 orders of magnitude, with final conductivities approaching 5000 S/m. Such techniques could prove useful when thermal processes including heating or laser sintering are limited by the temperature constraints of typical biodegradable substrates. Both accelerated oxidative and hydrolytic degradation of the printed composite conductors are examined, and a fully biodegradable capacitive soil moisture sensor is fabricated and tested.
机译:可生物降解的电子产品是一种快速增长的领域,并且在环境条件下适用于添加剂制造的可控可生物降解的高导电材料的发展仍然是一个挑战。在本报告中,证明了使用聚(乳酸)(PLA)作为粘合剂和钨作为导体的可印刷导电浆料。这些复合导体可以在可能存在水分的应用中提供增强的稳定性,例如环境监测或农业。使用溶剂老化技术的印刷迹线将导电率高增加2个级,最终导电率接近5000 s / m。当包括加热或激光烧结的热处理受典型的可生物降解基板的温度约束的限制时,这种技术可以证明是有用的。检查印刷复合导体的加速氧化和水解劣化,并制造和测试完全可生物降解的电容性土壤湿度传感器。

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