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晶态纳米二氧化钛浸渍于静电纺丝立构复合聚乳酸无纺纳米纤维中,具有超亲水、抗收缩、深色染色和去除废水染料的能力,可实现可持续应用。

Crystalline titanium-dioxide nanofinish impregnated on electrospun stereocomplex poly (lactic acid) as non-woven nanotextile with superhydrophilic, anti-shrinkage, dark dyeing and waste dye removal ability for sustainable application.

机构信息

Department of Chemical Engineering, Indian Institute of Technology Guwahati, Assam 781039, India.

Department of Chemical Engineering, Indian Institute of Technology Guwahati, Assam 781039, India.

出版信息

Int J Biol Macromol. 2022 Oct 31;219:384-394. doi: 10.1016/j.ijbiomac.2022.07.093. Epub 2022 Jul 16.

DOI:10.1016/j.ijbiomac.2022.07.093
PMID:35850271
Abstract

An environmentally friendly non-woven nanotextile has been prepared using enantiomeric pairs of poly (lactic acid) PLA by electrospinning technique. Solution blending of synthesized high molecular weight (⁓10 Da) poly (L-lactic acid) PLLA and poly (D-lactic acid), PDLA for prolonged time stirring produce solely stereocrystallites (sc). The high crosslinking effect of sc-PLA has played an important role, with multifunctional behaviour on the addition of anatase-TiO (a-TiO) in three different ways (Case-I-III). The high crystallinity of a-TiO (~7.14 nm), has been confirmed from XRD and TEM studies as 98 %. The nanofinish as studied in (Case -III) by dipping and drying has decreased the water contact angle for the electrospun sc-PLA nanotextile from highly hydrophobic (132°) to superhydrophilicity after 8 min. An easy demonstration of high temperature treated nanofabric (at 100 °C) has proven to obtain an anti-shrinkage sc-PLA nanofabric. Even, the presence of a-TiO has improved the colour strength ability of sc-PLA as a dark dyed nanofabric. The loading of as-synthesized a-TiO nanoparticle has enhanced adsorbent dosages for 5TscPLA up to 1.44 mg/g of MB dosage, at contact time (8 h), and 68 % methylene blue (MB) removal efficiency under UV irradiation. Thereby, this a-TiO impregnated sc-PLA nanofabric tends to dye removal.

摘要

一种环保的无纺纳米纤维已通过静电纺丝技术用对映体聚乳酸(PLA)制备。合成高分子量(10 Da)聚 L-乳酸(PLLA)和聚 D-乳酸(PDLA)的溶液共混物经长时间搅拌仅产生立体结晶(sc)。sc-PLA 的高交联效应发挥了重要作用,并通过三种不同方式(案例 I-III)在添加锐钛矿型 TiO2(a-TiO)时表现出多功能行为。高结晶度的 a-TiO(7.14 nm)已通过 XRD 和 TEM 研究确认为 98%。在(案例 III)中通过浸渍和干燥进行的纳米整理,使电纺 sc-PLA 纳米纤维的水接触角从高疏水性(132°)降低到超亲水性,仅需 8 分钟。对高温处理的纳米纤维(100°C)的简单演示已证明可以获得抗收缩的 sc-PLA 纳米纤维。甚至,a-TiO 的存在提高了 sc-PLA 的颜色强度能力,使其成为深色染色的纳米纤维。合成的 a-TiO 纳米颗粒的负载量提高了 5TscPLA 的吸附剂剂量,在接触时间(8 小时)内达到 1.44 mg/g 的 MB 剂量,在紫外线照射下,亚甲基蓝(MB)的去除效率达到 68%。因此,这种浸渍 a-TiO 的 sc-PLA 纳米纤维倾向于去除染料。

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