School of Materials Science and Physics, China University of Mining and Technology, Xuzhou 221116, China.
Anhui Sentai WPC Group Share Co., Ltd., Guangde 242299, China.
ACS Appl Mater Interfaces. 2023 Jul 12;15(27):32463-32474. doi: 10.1021/acsami.3c05834. Epub 2023 Jun 28.
Poly(lactic acid) (PLA)-based nanofibrous membranes (NFMs) hold great potential in the field of biodegradable filters for air purification but are largely limited by the relatively low electret properties and high susceptibility to bacteria. Herein, we disclosed a facile approach to the fabrication of electroactive and antibacterial PLA NFMs impregnated with a highly dielectric photocatalyst. In particular, the microwave-assisted doping (MAD) protocol was employed to yield Zn-doped titanium dioxide (Zn-TIO), featuring the well-defined anatase phase, a uniform size of ∼65 nm, and decreased band gap (3.0 eV). The incorporation of Zn-TIO (2, 6, and 10 wt %) into PLA gave rise to a significant refinement of the electrospun nanofibers, decreasing from the highest diameter of 581 nm for pure PLA to the lowest value of 264 nm. More importantly, dramatical improvements in the dielectric constants, surface potential, and electret properties were simultaneously achieved for the composite NFMs, as exemplified by a nearly 94% increase in surface potential for 3-day-aged PLA/Zn-TIO (90/10) compared with that of pure PLA. The well regulation of morphological features and promotion of electroactivity contributed to a distinct increase in the air filtration performance, as demonstrated by 98.7% filtration of PM with the highest quality factor of 0.032 Pa at the airflow velocity of 32 L/min for PLA/Zn-TIO (94/6), largely surpassing pure PLA (89.4%, 0.011 Pa). Benefiting from the effective generation of reactive radicals and gradual release of Zn by Zn-TIO, the electroactive PLA NFMs were ready to profoundly inactivate and . The exceptional combination of remarkable electret properties and excellent antibacterial performance makes the PLA membrane filters promising for healthcare.
聚乳酸(PLA)基纳米纤维膜(NFMs)在可生物降解空气净化过滤器领域具有巨大潜力,但在很大程度上受到相对较低的驻极体特性和对细菌易感性的限制。在此,我们披露了一种简便的方法来制造电活性和抗菌 PLA NFMs,其中浸渍有高介电光催化剂。特别是,采用微波辅助掺杂(MAD)方案得到锌掺杂二氧化钛(Zn-TIO),具有明确的锐钛矿相、约 65nm 的均匀尺寸和减小的带隙(3.0eV)。将 Zn-TIO(2、6 和 10wt%)掺入 PLA 中导致电纺纳米纤维的显著细化,从纯 PLA 的最高直径 581nm 降低到最低值 264nm。更重要的是,复合 NFMs 的介电常数、表面电势和驻极体性能同时得到了显著提高,例如,与纯 PLA 相比,经过 3 天老化的 PLA/Zn-TIO(90/10)的表面电势增加了近 94%。形态特征的良好调节和电活性的促进导致空气过滤性能的明显提高,例如,在气流速度为 32L/min 时,PLA/Zn-TIO(94/6)对 PM 的过滤效率高达 98.7%,最高品质因数为 0.032Pa,大大超过纯 PLA(89.4%,0.011Pa)。得益于 Zn-TIO 有效产生活性自由基和逐步释放 Zn,电活性 PLA NFMs 能够深度灭活 和 。显著的驻极体特性和优异的抗菌性能的卓越结合使 PLA 膜过滤器在医疗保健领域具有广阔的应用前景。