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纳米TiO2半导体溶胶的光生物学效应
引用本文:张萍,崔海信,李玲玲.纳米TiO2半导体溶胶的光生物学效应[J].无机材料学报,2008,23(1):55-60.
作者姓名:张萍  崔海信  李玲玲
作者单位:中国农业科学院,农业环境与可持续发展研究所,北京,100081
基金项目:中国农业科学院杰出人才基金 , 国家高技术研究发展计划(863计划)
摘    要:通过溶胶-凝胶法制备了纳米TiO2半导体溶胶材料(nano-TiO2 semiconductor sol,NTSS),并测定了抗菌性能;以黄瓜为研究对象,初步探讨了NTSS在防治植物细菌性/真菌性病害及增加叶片光合色素含量方面的光生物学效应.试验结果表明,溶胶材料中TiO2颗粒的结晶型为锐钛矿型,平均粒径为30.6nm;TiO2溶胶材料可在叶片等固体表面形成连续、稳定的抗菌薄膜,具有很强的光氧化活性,抗菌率达到99.9%;通过人工接种病原菌试验及田间病害调查试验发现,黄瓜喷施一定浓度的NTSS后,可显著降低叶片病斑面积、发病率及病情指数,对黄瓜细菌性角斑病/霜霉病的发生具有抑制效果;测定叶片光合色素含量发现,NTSS对叶绿素(Chl)及类胡萝卜素(Car)的生成具有促进作用.

关 键 词:纳米材料  TiO2  植物病害  防治  光合色素  纳米  半导体  溶胶  生物学效应  Semiconductors  作用  类胡萝卜素  叶绿素  抑制效果  发生  霜霉病  黄瓜细菌性角斑病  病情指数  发病率  面积  浓度  喷施  发现  病害调查  田间
文章编号:1000-324X(2008)01-0055-06
收稿时间:2007-02-06
修稿时间:2007-04-18

Photobiological Effects of Nano-TiO2 Semiconductors Sol
ZHANG Ping,CUI Hai-Xin,LI Ling-Ling.Photobiological Effects of Nano-TiO2 Semiconductors Sol[J].Journal of Inorganic Materials,2008,23(1):55-60.
Authors:ZHANG Ping  CUI Hai-Xin  LI Ling-Ling
Affiliation:(InstituteofEnvironmentandSustainableDevelopmentinAgriculture,ChineseAcademyofAgriculturalSciences,Beijing100081,China)
Abstract:Nano-TiO2 semiconductors sol (NTSS) was synthesized through a sol-gel method, and its antibacterial abilities were identified by using bacterial pathogens of Pseudomonos syringae pv. lachrymans and Xanthomonas vesicatoria. Taking cucumber plants as experimental objects, the photobiological effects of NTSS on preventing from plant bacterial/fungal diseases and promoting contents of photosynthetic pigments were primarily studied. Results show that crystal species of TiO2 particles synthesized in experiments are in anatase phase with average size of about 30.6nm. NTSS possesses strong oxidizing power with over 99.9% antibacterial rate by forming continuous and stable antibacterial films on surfaces of substance. Lesion areas, disease incidences and disease indexes of leaves can be significantly reduced by spraying NTSS on cucumber leaves; however, content of chlorophyll and carotenoid in leaves can be significantly promoted. It is proved that NTSS can significantly prevent and control the development and pervasion of bacterial angular leaf spot of cucumber. The experimental results lay an important theoretical foundation and technical approach for developing and applying of biofuntional nanomaterials in agricultural areas.
Keywords:nanomaterial  TiO2  plant disease  prevention  photosynthetic pigments
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