Department of Materials Science and Engineering, Stanford University , Stanford, California 94305, United States.
ACS Appl Mater Interfaces. 2013 Oct 23;5(20):9891-5. doi: 10.1021/am403032v. Epub 2013 Oct 4.
Interfaces between organic and inorganic materials are of critical importance to the lifetime of devices found in microelectronic chips, organic electronics, photovoltaics, and high-performance laminates. Hybrid organic/inorganic materials synthesized through sol-gel processing are best suited to address these challenges because of the intimate mixing of both components. We demonstrate that deposition from heterogeneous sol-gel solutions leads to the unique nanolength-scale control of the through-thickness film composition and therefore the independent optimization of both the bulk and interfacial film properties. Consequently, an outstanding 3-fold improvement in the adhesive/cohesive properties of these hybrid films can be obtained from otherwise identical precursors.
有机材料和无机材料之间的界面对于微电子芯片、有机电子、光伏和高性能层压板中器件的寿命至关重要。通过溶胶-凝胶处理合成的混合有机/无机材料最适合解决这些挑战,因为两种成分的紧密混合。我们证明,从非均相溶胶-凝胶溶液沉积导致了薄膜厚度方向上独特的纳米级成分控制,从而可以独立优化体相和界面膜性能。因此,即使使用相同的前体,这些混合薄膜的粘结/内聚性能也可以提高 3 倍。