Research Institution for Biomimetics and Soft Matter College of Physical Science and Engineering, Fujian Key Provincial Laboratory for Soft Functional Materials Research, Xiamen University, 422 Siming Nan Road, Xiamen, 361005, P. R. China.
Key Laboratory of Textile Science and Technology, Ministry of Education, College of Textiles, Donghua University, 2999 Renmin Bei Road, Shanghai, 201620, P. R. China.
Small. 2017 Oct;13(40). doi: 10.1002/smll.201702390. Epub 2017 Sep 1.
Silk fibroin (SF) offers great opportunities in manufacturing biocompatible/partially biodegradable devices with environmental benignity and biomedical applications. To obtain active SF devices of next generation, this work is to demonstrate a new functionalization strategy of the mesoscopic functionalization for soft materials. Unlike the atomic functionalization of solid materials, the meso-functionalization is to incorporate meso-dopants, i.e., functional molecules or nanomaterials, quantum dots, into the mesoscopic networks of soft materials. In this work, wool keratin (WK) molecules were adopted as mediating molecules to incorporate gold nanoclusters (AuNCs), into the mesoscopic networks of SF. It follows from our analyses that the β-crystallites between WK and SF molecules establish the binding between WK@AuNCs and the SF networks. The incorporated WK@AuNCs are electron rich and serve as electronically charged nano particles to bridge the growth of Ag filaments in bio-degradable WK@AuNCs-SF memristors. The meso-functionalization can greatly enhance the performance of SF materials and endows them with new functionalities. This can be highlighted by biocompatible/partly degradable WK@AuNCs functionalized SF resistive random-access memories, having the enhanced resistive switching memory performance, and the unique synapse characteristics and the capability of synapse learning compared with neat SF devices, and of great importance in nonvolatile memory, analog circuits, and neuromorphic applications.
丝素蛋白 (SF) 在制造具有生物相容性/部分可生物降解的设备方面提供了很好的机会,具有环境友好性和生物医学应用。为了获得下一代具有活性的 SF 器件,本工作展示了一种软物质介观功能化的新功能化策略。与固体材料的原子功能化不同,介观功能化是将介观掺杂剂,即功能分子或纳米材料、量子点,掺入软物质的介观网络中。在这项工作中,羊毛角蛋白 (WK) 分子被用作介导分子,将金纳米团簇 (AuNCs) 掺入 SF 的介观网络中。我们的分析表明,WK 和 SF 分子之间的 β-晶体建立了 WK@AuNCs 与 SF 网络之间的结合。掺入的 WK@AuNCs 富电子,并作为带点纳米颗粒在可生物降解的 WK@AuNCs-SF 忆阻器中桥接 Ag 细丝的生长。介观功能化可以大大提高 SF 材料的性能,并赋予它们新的功能。这可以通过生物相容性/部分可降解的 WK@AuNCs 功能化 SF 电阻式随机存取存储器来突出显示,与纯 SF 器件相比,这种存储器具有增强的电阻开关存储性能以及独特的突触特性和突触学习能力,在非易失性存储器、模拟电路和神经形态应用中具有重要意义。