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北京化工大学材料科学与工程学院,北京 100029;化工资源有效利用国家重点实验室,北京 100029
齐胜利,副教授,主要从事功能性聚酰亚胺及其金属纳米复合材料制备的研究。E-mail : qisl@mail.buct.edu.cn;
*武德珍,教授、博导,主要从事聚合物结构与性能关系及高性能和功能聚合物制备的研究。E-mail: wdz@mail.buct.edu.cn.
纸质出版日期:2013-04,
收稿日期:2012-09-11,
修回日期:2012-12-13,
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齐胜利, 吴战鹏, 武德珍, 金日光. 具有高表面反射性和导电性的聚酰亚胺-银复合薄膜的制备[J]. 高分子通报, 2013,26(4):133-145.
Sheng-li QI, Zhan-peng WU, De-zhen WU, Ri-guang JIN. Fabrication of Surface-Silvered Polyimide Films with High Reflectivity and Conductivity[J]. Polymer Bulletin, 2013,26(4):133-145.
聚酰亚胺-银的复合薄膜以其表面银层无与伦比的反射性和电导率
再加上聚酰亚胺基体本身优异的热稳定性和物理机械性能
以及其轻质和柔性的特点
在航空航天和微电子等许多领域具有广阔的应用前景
成为近年来广泛研究的多功能材料之一。本文对比了当前用于制备表面金属化的聚酰亚胺薄膜的各种方法及其优缺点
包括外部沉降法、超临界流体法、原位一步自金属化法、表面改性离子交换自金属化法和直接离子交换自金属化法
特别总结了由本课题组近年来所发展起来的表面改性离子交换自金属化法和直接离子交换自金属化法在制备高反射高导电的双面银化的聚酰亚胺薄膜方面所取得的研究进展。这两种方法均基于简单的银盐化合物前驱体即可实现双面高反射高导电的表面银化的聚酰亚胺薄膜的制备
过程简单
成本低廉。所制得的聚酰亚胺-银复合薄膜的表面反射率超过100%
表面电阻接近纯金属银的水平;复合薄膜的表面银层与聚合物基体之间有很优异的粘结性能;且很好地保持了母体聚酰亚胺薄膜优异的机械性能和热性能。其中采用直接离子交换自金属化技术
仅需将聚酰亚胺的预聚体薄膜在极稀的银盐水溶液中(0.01M银氨溶液)处理5min
然后热处理即可实现聚酰亚胺薄膜的双面金属化
是目前效率最高和银利用率最高的方法。
Surface-silvered polyimide (PI) film
due to the combination of the excellent thermal and mechanical properties of the polyimide matrix and the unmatched optical reflectivity and electrical conductivity of the surface silver (Ag) layer as well as as its light weight and flexibility
has been found widely attractive in aerospace and microelectronic industry and therefore has been extensively studied in recent years. In this review
we described the currently-used main techniques that were developed for the preparation of surface-metallized polyimide films
including external deposition
supercritical fluid impregnation
in-situ single-stage self-metallization
surface-modification ion-exchange self- metallization and direct ion-exchange self-metallization methods
and compared their advantages and disadvantages for producing the metallized polymer films. Particularly
the progress in the preparation of highly reflective and conductive surface-silvered polyimide films via the surface-modification ion- exchange self-metallization technique and direct ion-exchange self-metallization technique
both of which were developed in our groups
was summarized. With these two methods
double-surface- silvered polyimide films with high surface reflectivity and conductivity were produced by employing simple silver compounds as the silver precursor
which possess the advantages of processing simplicity and considerably reduced cost. Moreover
the finally-obtained polyimide-silver composite films were prepared with surface reflectivity over 100% and surface conductivity comparable to native silver metal. Excellent interfacial adhesion between the surface silver layer and the polyimide substrate was realized and the surface-metallized hybrid films basically maintain the essential thermal and mechanical properties of the parent polyimide. Especially
it should be emphasized that
with the direct ion- exchange self-metallization procedure
double-surface-silvered polyimide films could be realized by employing an aqueous silver ammonia ( [Ag(NH
3
)
2
]NO
3
) solution with a concentration of only 0. 01M and an ion-exchange time of merely 5min
which were demonstrated to be the most efficient film preparation route with the most economical silver usage.
聚酰亚胺银反射导电表面金属化
PolyimideSilverReflectiveConductiveSurface-metallization
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