...
首页> 外文期刊>Science Advances >Belousov-Zhabotinsky autonomic hydrogel composites: Regulating waves via asymmetry
【24h】

Belousov-Zhabotinsky autonomic hydrogel composites: Regulating waves via asymmetry

机译:Belousov-Zhabotinsky自主水凝胶复合材料:通过不对称调节波

获取原文

摘要

Belousov-Zhabotinsky (BZ) autonomic hydrogel composites contain active nodes of immobilized catalyst (Ru) encased within a nonactive matrix. Designing functional hierarchies of chemical and mechanical communication between these nodes enables applications ranging from encryption, sensors, and mechanochemical actuators to artificial skin. However, robust design rules and verification of computational models are challenged by insufficient understanding of the relative importance of local (molecular) heterogeneities, active node shape, and embedment geometry on transient and steady-state behavior. We demonstrate the predominance of asymmetric embedment and node shape in low-strain, BZ-gelatin composites and correlate behavior with gradients in BZ reactants. Asymmetric embedment of square and rectangular nodes results in directional steady-state waves that initiate at the embedded edge and propagate toward the free edge. In contrast, symmetric embedment does not produce preferential wave propagation because of a lack of diffusion gradient across the catalyzed region. The initiation at the embedded edge is correlated with bromide absorption by the inactive matrix, which locally elevates the bromate concentration required for catalyst oxidation. The competition between embedment asymmetry and node geometry was used to demonstrate a repeatable switch in wave direction that functions as a signal delay. Furthermore, signal propagation in or out of the composite was demonstrated via embedment asymmetry and relative dimensions of a T-shaped active network node. Overall, structural asymmetry provides a robust approach to controlling initiation and orientation of chemical-mechanical communication within composite BZ gels.
机译:Belousov-Zhabotinsky(BZ)自主水凝胶复合材料包含包裹在非活性基质中的固定催化剂(Ru)的活性节点。在这些节点之间设计化学和机械通信的功能层次,可以实现从加密,传感器,机械化学执行器到人造皮肤的各种应用。但是,由于对局部(分子)异质性,有源节点形状和嵌入几何形状对瞬态和稳态行为的相对重要性的了解不足,挑战了健壮的设计规则和计算模型的验证。我们证明了在低应变的BZ-明胶复合材料中不对称嵌入和节点形状的优势,并将行为与BZ反应物的梯度相关联。方形和矩形节点的不对称嵌入会导致定向稳态波,该稳态波在嵌入边缘处发起并向自由边缘传播。相反,由于在整个催化区域缺乏扩散梯度,对称嵌入不会产生优先的波传播。嵌入边缘的引发与惰性基质对溴化物的吸收有关,这会局部提高催化剂氧化所需的溴酸盐浓度。嵌入不对称性和节点几何形状之间的竞争被用来证明在波方向上的可重复开关,其起到信号延迟的作用。此外,通过嵌入不对称性和T形有源网络节点的相对尺寸,证明了信号在复合物中的传播或传播。总体而言,结构不对称性为控制复合BZ凝胶内化学-机械通讯的引发和取向提供了可靠的方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号