快速电沉积制备MXene/PDA 复合材料用于高性能生物电子界面:体外评估

Fast Electrodeposition of MXene/PDA Composites for High-Performance Bioelectronic Interfaces: An In Vitro Evaluation

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DOI 10.1002/adfm.202312770
刊名
年,卷(期) 2024, 34(23)
作者
作者单位 1 深圳大学;
2 中国科学院深圳先进技术研究院

摘要
生物电极对于许多生物医学研究至关重要。然而,传统材料(通常是贵金属)和制造技术限制了生物电极的大规模生产。本文提出了一种快速电化学方法,用于在金属化基底上沉积多功能 MXene/聚多巴胺 (PDA) 复合材料。 PDA涂层可以提高MXene与基材之间的附着力,同时MXene提供具有独特微/纳米结构的粗糙表面和出色的电/光/热性能。所制备的生物电极在 1 kHz 下的阻抗降至 8.48 Ω cm 2 。相应的阴极电荷存储能力(CSC c )和电荷注入能力(CIC)分别高达约250和6.59 mC cm −2 ,远优于裸Pt和其他材料。传统的基于材料的电极。 MXene/PDA 复合材料还在 1 × 10 8 脉冲周期和 1000 CV 周期的连续电刺激下表现出强大的稳定性。此外,MXene/PDA 复合材料表现出高而快速的光热响应。在高光电流下也观察到了光电化学活性,比裸铂大约 40 倍。证明了这种新型电极在抗坏血酸传感中的实用性。通过神经元粘附测试和活力测定验证了优异的生物相容性。
Abstract
Bioelectrode is critical to many biomedical researches. However, traditional materials (typically noble metals) and manufacturing techniques limit the large-scale production of bioelectrodes. Herein, a fast electrochemical approach is proposed to deposit versatile MXene/polydopamine (PDA) composites on a metalized substrate. PDA coating can improve the adhesion between MXene and the substrate, while MXene provides rough surfaces with unique micro/nanostructure and outstanding electrical/optical/thermal performance. The impedance of the as-prepared bioelectrode at 1 kHz is down to 8.48 Ω cm2. The corresponding cathodic charge storage capacity (CSCc) and charge injection capacity (CIC) are up to ≈250 and 6.59 mC cm−2 respectively, much superior to that of bare Pt and other conventional material-based electrodes. The MXene/PDA composites also demonstrate robust stability under continuous electrostimulation for 1 × 108 pulse cycles and 1000 CV cycles. Moreover, MXene/PDA composites show a high and rapid photothermal response. Photoelectrochemical activity is also observed with high photocurrent, ≈40 folds larger than that of bare Pt. The utility of this new electrode in ascorbic acid sensing is demonstrated. Excellent biocompatibility is verified via neuron adhesion test and viability assay.
关键词
生物电子接口,快速电沉积,MXene,神经电极,聚多巴胺
KeyWord
bioelectronic interfaces, fast electrodeposition, MXene, neural electrodes, polydopamine (PDA)
基金项目
页码 2312770-
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曾齐,邢晨阳,徐臻,刘青,杨良滔,杨慧,张翊*, 彭争春*. 快速电沉积制备MXene/PDA 复合材料用于高性能生物电子界面:体外评估 [J]. Advanced Functional Materials. 2024; 34; (23). 2312770 - .

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