Sanchez-Duenas Leire, Gomez Estibaliz, Larrañaga Mikel, Blanco Miren, Goitandia Amaia M, Aranzabe Estibaliz, Vilas-Vilela José Luis
Surface Chemistry & Nanotechnologies Unit, Fundación Tekniker, Inaki Goenaga 5, 20600 Eibar, Spain.
Electronics and Communications Unit, Fundación Tekniker, Inaki Goenaga 5, 20600 Eibar, Spain.
Materials (Basel). 2023 May 24;16(11):3940. doi: 10.3390/ma16113940.
In the last decades, the demand for electronics and, therefore, electronic waste, has increased. To reduce this electronic waste and the impact of this sector on the environment, it is necessary to develop biodegradable systems using naturally produced materials with low impact on the environment or systems that can degrade in a certain period. One way to manufacture these types of systems is by using printed electronics because the inks and the substrates used are sustainable. Printed electronics involve different methods of deposition, such as screen printing or inkjet printing. Depending on the method of deposition selected, the developed inks should have different properties, such as viscosity or solid content. To produce sustainable inks, it is necessary to ensure that most of the materials used in the formulation are biobased, biodegradable, or not considered critical raw materials. In this review, different inks for inkjet printing or screen printing that are considered sustainable, and the materials that can be used to formulate them, are collected. Printed electronics need inks with different functionalities, which can be mainly classified into three groups: conductive, dielectric, or piezoelectric inks. Materials need to be selected depending on the ink's final purpose. For example, functional materials such as carbon or biobased silver should be used to secure the conductivity of an ink, a material with dielectric properties could be used to develop a dielectric ink, or materials that present piezoelectric properties could be mixed with different binders to develop a piezoelectric ink. A good combination of all the components selected must be achieved to ensure the proper features of each ink.
在过去几十年里,对电子产品以及电子垃圾的需求都有所增加。为了减少电子垃圾以及该行业对环境的影响,有必要开发使用对环境影响较小的天然材料制成的可生物降解系统,或者开发在一定时期内能够降解的系统。制造这类系统的一种方法是使用印刷电子技术,因为所使用的墨水和基板是可持续的。印刷电子技术涉及不同的沉积方法,如丝网印刷或喷墨印刷。根据所选的沉积方法,所开发的墨水应具有不同的特性,如粘度或固体含量。为了生产可持续的墨水,有必要确保配方中使用的大多数材料是生物基的、可生物降解的,或者不被视为关键原材料。在这篇综述中,收集了用于喷墨印刷或丝网印刷的、被认为是可持续的不同墨水,以及可用于配制这些墨水的材料。印刷电子技术需要具有不同功能的墨水,这些墨水主要可分为三类:导电墨水、介电墨水或压电墨水。需要根据墨水的最终用途来选择材料。例如,应使用碳或生物基银等功能材料来确保墨水的导电性,具有介电特性的材料可用于开发介电墨水,或者具有压电特性的材料可与不同的粘合剂混合以开发压电墨水。必须实现所选所有成分的良好组合,以确保每种墨水都具有适当的特性。