Department of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, USA.
ACS Appl Mater Interfaces. 2009 Oct;1(10):2277-87. doi: 10.1021/am9004368.
This work reports on repeatable adhesive materials prepared by controlled grafting of dangling hetero chains from polymer elastomers. The dangling chain elastomer system was prepared by grafting poly(n-butyl acrylate) (PBA) chains from prefunctionalized polydimethylsiloxane (PDMS) elastomer networks using atom transfer radical polymerization. To study the effects of chain growth and network strain as they relate to network adhesion mechanics, various lengths of PBA chains with degree of polymerizations (DP) of 65, 281, 508, and 1200 were incorporated into the PDMS matrix. PBA chains with a DP value of 281 grafted from a flat PDMS substrate showed the highest (approximately 3.5-fold) enhancement of nano- and macroscale adhesion relative to a flat raw (ungrafted and not prefunctionalized) PDMS substrate. Moreover, to study the effect of PBA dangling chains on adhesion in fibrillar elastomer structures inspired by gecko foot hairs, a dip-transfer fabrication method was used to graft PBA chains with a DP value of 296 from the tip endings of mushroom-shaped PDMS micropillars. A PBA chain covered micropillar array showed macroscale adhesion enhancement up to approximately 7 times relative to the flat ungrafted prefunctionalized PDMS control substrate, showing additional nonoptimized approximately 2-fold adhesion enhancement due to fibrillar structuring and mushroom-shaped tip ending. These dangling hetero chains on elastomer micro-/nanofibrillar structures may provide a novel fabrication platform for multilength scale, repeatable, and high-strength fibrillar adhesives inspired by gecko foot hairs.
这项工作报道了通过从聚合物弹性体上可控接枝悬空杂链来制备可重复使用的粘性材料。通过原子转移自由基聚合(ATRP),从预官能化的聚二甲基硅氧烷(PDMS)弹性体网络上接枝聚 n- 丁基丙烯酸酯(PBA)链,制备了悬空链弹性体体系。为了研究链增长和网络应变对网络粘附力学的影响,将不同长度的 PBA 链(聚合度 DP 分别为 65、281、508 和 1200)引入 PDMS 基体中。从平坦 PDMS 基底上接枝的 DP 值为 281 的 PBA 链相对于平坦的原始(未接枝且未预官能化的)PDMS 基底,表现出纳米和宏观粘附的最高(约 3.5 倍)增强。此外,为了研究 PBA 悬空链对受壁虎脚毛启发的纤维状弹性体结构中的粘附的影响,采用浸涂转移法在蘑菇形 PDMS 微柱的尖端末端接枝 DP 值为 296 的 PBA 链。与平坦的未接枝预官能化 PDMS 对照基底相比,覆盖 PBA 链的微柱阵列显示出高达约 7 倍的宏观粘附增强,由于纤维状结构和蘑菇形尖端末端,还显示出额外的未经优化的约 2 倍的粘附增强。这些弹性体微/纳纤维结构上的悬空杂链可能为受壁虎脚毛启发的多长度尺度、可重复使用和高强度纤维状粘合剂提供一个新的制造平台。