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Simple Fabrication of PVA–ZnS Composite Filmswith Superior Photocatalytic Performance: Enhanced Luminescence PropertyMorphology and Thermal Stability

机译:PVA-ZnS复合膜的简单制备具有出色的光催化性能:增强的发光性能形态和热稳定性

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摘要

Poly(vinyl alcohol) (PVA)–ZnS composite films were prepared by varying the composition of PVA ranging from 1–5 wt % through a simple solvent casting method. The photocatalytic enactment of the composites was evaluated along with the investigations of their photoluminescence (PL), optical transparency, morphology, and thermal properties. The firm interaction between the ZnS and PVA was confirmed by Fourier transform infrared, UV–vis, and PL spectroscopies. PVA–ZnS composites showed enhanced luminescence property than PVA. The composites exhibited very good optical transparency regardless of the amount of PVA addition. The thermogravimetric analysis data indeed exhibited better thermal stability of the composites. The glass transition temperature (Tg), melting temperature (Tm), enthalpy of melting (ΔHm), and crystallinity were evaluated for such composites. The composites demonstrated morphological variations depending on the amount of PVA addition, although the particle size of ZnS remained similar in the nanometer range (50–120 nm) for all compositesamples. The prepared composite films exhibited superior photocatalyticperformance in the degradation of methylene blue compared with thebare ZnS and PVA. This study may give a new insight into the fabricationof PVA–ZnS photocatalysts for the treatment of organic pollutants.
机译:聚乙烯醇(PVA)–ZnS复合膜是通过简单的溶剂浇铸方法,通过改变PVA的组成(1-5%)来制备的。评估了复合材料的光催化性能,并研究了其光致发光(PL),光学透明性,形态和热性能。 ZnS和PVA之间的牢固相互作用已通过傅立叶变换红外光谱,紫外可见光谱和PL光谱证实。 PVA-ZnS复合材料的发光性能比PVA增强。不管PVA的添加量如何,该复合物都表现出非常好的光学透明性。热重分析数据确实显示出复合材料更好的热稳定性。对于这种复合材料,评估其玻璃化转变温度(Tg),熔融温度(Tm),熔融焓(ΔHm)和结晶度。复合材料表现出的形态变化取决于PVA的添加量,尽管ZnS的粒径在所有复合材料的纳米范围内(50-120 nm)都保持相似样品。制备的复合膜表现出优异的光催化性能与亚甲基蓝的降解性能相比裸露的ZnS和PVA。这项研究可能会为制造提供新的见解PVA-ZnS光催化剂用于处理有机污染物。

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