Hybrid biodegradable electrospun scaffolds based on poly(l-lactic acid) and reduced graphene oxide with improved piezoelectric response

结晶度 材料科学 石墨烯 无定形固体 可生物降解聚合物 聚合物 压电 氧化物 化学工程 复合材料 纳米技术 化学 有机化学 工程类 冶金
作者
Igor O. Pariy,Roman V. Chernozem,Polina V. Chernozem,Yulia R. Mukhortova,André G. Skirtach,Vladimir V. Shvartsman,Doru C. Lupascu,Maria A. Surmeneva,Sanjay Mathur,Roman A. Surmenev
出处
期刊:Polymer Journal [Springer Nature]
卷期号:54 (10): 1237-1252 被引量:29
标识
DOI:10.1038/s41428-022-00669-1
摘要

Piezoelectric poly-L-lactide (PLLA) is a biodegradable polymer used in various biomedical applications. However, tailoring and controlling the structure of PLLA to enhance its piezoelectric response remains a challenge. In this work, extensive characterization was performed to reveal the effect of the reduced graphene oxide (rGO) content (0.2, 0.7, and 1.0 wt%) on the morphology, structure, thermal and piezoelectric behavior of PLLA scaffolds. Randomly oriented homogeneous fibers and a quasi-amorphous structure for pure PLLA and hybrid PLLA-rGO scaffolds were revealed. The addition of rGO affected the molecular structure of the PLLA scaffolds: for example, the number of polar C=O functional groups was increased. Increasing the content of rGO to 1 wt% resulted in decreased glass transition and melting temperatures and increased the degree of crystallinity of the scaffolds. The addition of 0.2 wt% rGO enhanced the effective local vertical and lateral piezoresponses by 2.3 and 15.4 times, respectively, in comparison with pure PLLA fibers. The presence of the shear piezoelectric α-phase (P212121) in uniaxially oriented PLLA fibers and C=O bond rotation in the polymer chains explained the observed piezoresponse. Thus, this study revealed routes to prepare hybrid biodegradable scaffolds with enhanced piezoresponse for tissue engineering applications.
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