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PVDF电纺纤维接枝马来酸酐及其负载PbS的光催化性能研究 被引量:1

Preparation and photocatalytic properties of PbS/PVDF-g-MAH composites
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摘要 聚偏氟乙烯(PVDF)电纺纤维经NaOH/无水乙醇溶液处理,在其表面接枝马来酸酐(MAH),得到聚偏氟乙烯纤维接枝马来酸酐(PVDF-g-MAH)。FT-IR结果表明,MAH成功接枝到PVDF纤维上。以PVDF-g-MAH纤维为载体,经水热法在PVDF-g-MAH纤维表面制备PbS纳米粒子光催化剂。SEM、XRD分析显示PbS在纤维表面分布均匀,结晶状态良好。以氙灯模拟太阳光,研究了PbS/PVDF-g-MAH纤维复合材料对亚甲基蓝水溶液的降解效果,6h对亚甲基蓝的降解率达到90%。 Poly(vinylidene fluoride)(PVDF)grafted maleic anhydride(MAH) fibers were prepared through maleic anhydride(MAH) grafted to PVDF electrospun fibers,which were pretreated by NaOH/alcohol solution.Fourier transform infrared spectroscopy(FT-IR)indicated that MAH was grafted to PVDF electrospun fibers successfully.Then,Lead sulfide(PbS) particles were uniformly immobilized on the surface of the PVDF-g-MAH electrospun fibers by hydrothermal methods.The PbS/PVDF-g-MAH composites were characterized by X-ray powder diffraction(XRD)and scanning electron microscopy(SEM).The results revealed that high-crystallinity PbS particles were distributed uniformly on the PVDF-g-MAH electrospun fibers.The degradation of methylene blue aqueous solution with the composites as the catalyst was performed under Xe lamp irradiation.The results showed that the composites had good photocatalytic efficiency.After 6 h of photocatalytic reaction,the degradation rate of methylene blue could reach to 90%.
出处 《化工新型材料》 CAS CSCD 北大核心 2011年第10期104-106,共3页 New Chemical Materials
关键词 聚偏氟乙烯 马来酸酐 光催化 硫化铅 poly(vinylidene fluoride) maleic anhydride photocatalysis lead sulfide
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  • 1Ferragina C, Cafarelli P, A De Stefanis, et al. Synthesis and chemical-physical characterization of pa;tladium and rhodium new materials derived from oetadecyltrimethylammonium cat- ionic surIactant intercalated into zirconium and titanium di- hydrogen phosphate[J]. Materials Research Bulletin, 2001,36 (10): 1799 - 1812.
  • 2Gadenne P, Yagil Y. In-situ measurements of the optical proper- ties of gold films near the percolation threshold[J]. Physiea A: Statistical Mechanics and Its Applications, 1989, 157 (1): 279- 284.
  • 3Zolotovskaya S A, Savitski V G, Gaponenko M S. Nd: KGd (WO4)2 laser at 1.35 lm passively Q-switched withV^3+ : YAG crystal and PbS-doped glass [J]. Optical Materials , 2006,28 (8- 9):919-924.
  • 4Brahimi R, Bessekhouad Y, Bouguelia A, et al. Improvement of eosin visible light degradation using PbS-sensititized TiOe [J]. Journal of Photochemistry and Photobiology A.- Chemis- try, 2008,194 (2-3) : 178-180.
  • 5张勇,乔正平,陈小明.微波辐照元素反应合成硫化铅纳米粒子[J].中山大学学报(自然科学版),2003,42(2):50-51. 被引量:7
  • 6Wang C, Zhang W X, Qian X F. A room temperature chemical route to nanocrystalline PbS semiconductor[J]. Materials Let- ters, 1999,40 (6) : 255-258.
  • 7Ernest H. Carlson. Vapor phase crystal growth in the system PbS-Bi2Sa [J]. Journal of Crystal Growth , 1972,12( 2): 162- 168.
  • 8Wang Ying, Zhang Junhu, Wang Zhanhua, et al. PbS nanop- articles/polymer composite aggregates through self-assembly of amphiphilic copolymer containing erossqinked hydrophilic block [J], Colloids and Surfaces A.. Physicochem Eng Aspects , 2007,292 (2-3) :159 164.
  • 9Wang Debao, Yu Dabin, Shao Mingwang, et al. Dendritic grwth of PhS crystals with different morphologies[J]. Journal of Crys- tal Growth,2003, 257 (3-4): 384-389.
  • 10何铁石,张晶,任凤梅,马海红,周正发,汪瑾,徐卫兵.表面改性PVDF电纺纤维负载ZnS复合材料的制备与光催化特性[J].环境科学学报,2009,29(8):1713-1719. 被引量:4

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