Department of Chemical Engineering, Technical University of Denmark, Denmark.
Chem Soc Rev. 2019 Mar 18;48(6):1448-1464. doi: 10.1039/c8cs00963e. Epub 2019 Feb 11.
The tutorial aims to equip the beginners in silicone research with the knowledge to formulate recipes and process elastomer networks, targeting specific properties related to soft applications such as stretchable electronics without compromising the mechanical integrity of the elastomer. In doing so, we hope to stimulate further research in the area of tailor-made soft silicone elastomers for novel applications and allow researchers to bypass the limitations imposed by the use of commercially available silicone elastomer formulations. Silicone elastomers are widely used due to the favourable properties, such as flexibility, durable dielectric insulation, barrier properties against environmental contaminants and stress-absorbing properties over a wide range of temperatures ≈-100 °C to 250 °C. For research on flexible electronics and other emerging technologies, the most commonly utilised silicone elastomer formulation is Sylgard 184 which is easier to process than most other commercially available silicone elastomers, due to the fact that the premixes have low viscosity. Furthermore, curing is robust and not as sensitive to poisoning as other silicone elastomer formulations. However, Sylgard 184 is not suitable for all fields of research that require flexible and stretchable silicones. When much softer networks are needed, the Sylgard 184 premixes are either mixed in non-stoichiometric ratios, or they are blended with softer types of commercially available elastomers, which compromise the mechanical integrity of the elastomer. Therefore, it is advantageous for researchers to formulate their own custom-made silicone elastomers and not depend on premade formulations which often harbour a few unknown components.
本教程旨在为硅胶研究的初学者提供配方和加工弹性体网络的知识,针对特定的性能,如可拉伸电子产品,同时不影响弹性体的机械完整性。通过这种方式,我们希望能激发更多针对定制软硅胶弹性体的研究,用于新型应用,并使研究人员能够避免使用市售硅胶弹性体配方所带来的限制。由于具有良好的性能,如柔韧性、持久的介电绝缘性、对环境污染物的阻隔性以及在很宽的温度范围内(约-100°C 至 250°C)的吸能性,硅胶弹性体得到了广泛的应用。对于柔性电子和其他新兴技术的研究,最常用的硅胶弹性体配方是 Sylgard 184,由于预混料具有低粘度,因此比大多数其他市售硅胶弹性体更容易加工。此外,固化过程稳定,不像其他硅胶弹性体配方那样容易受到中毒的影响。然而,Sylgard 184 并不适用于所有需要柔软和可拉伸硅胶的研究领域。当需要更柔软的网络时,Sylgard 184 预混料要么以非化学计量比混合,要么与更柔软的市售弹性体类型混合,这会影响弹性体的机械完整性。因此,研究人员自己定制他们自己的硅胶弹性体是有利的,而不是依赖于常常包含一些未知成分的预混料。