“南方葡萄根域限制与避雨栽培关键技术研究与示范”成果简介

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2014年1月10日,一年一度的国家科学技术奖励大会在北京隆重召开。2013年度国家科学技术奖励共授奖10位科技专家和313项成果。其中,国家最高科学技术奖2人;国家自然科学奖54项,其中一等奖1项、二等奖53项;国家技术发明奖71项,其中一等奖2项、二等奖69项;国家科学技术进步奖188项,其中特等奖3项、一等奖24项、二等奖161项;授予8名外籍科学家中华人民共和国国际科学技术合作奖。值得祝贺的是,由上海交通大学联合湖南农业大学、上海农科院等单位申报的“南方葡萄根域限制与避雨栽培关键技术与示范”项目也在国家科技进步二等奖的获奖名单之列,该项目是葡萄行业获得的最高奖项,是国家对近年南方葡 On January 10, 2014, the annual National Science and Technology Awards were held in Beijing. In 2013, the National Science and Technology Awards were awarded 10 scientific and technological experts and 313 achievements. Among them, the State Supreme Science and Technology Award 2; National Natural Science Award 54, of which a first prize, second prize 53; 71 national technology invention awards, of which two first prize, 69 second prize; There are 188 national science and technology progress awards, including 3 grand prizes, 24 first prizes and 161 second prizes; and 8 foreign scientists awarded the International Science and Technology Cooperation Award of the People’s Republic of China. It is worth congratulating that the project “Key Techniques and Demonstration of Restricted and Rain-resistant Cultivation in the Southern Grape Root Zone” declared by Shanghai Jiaotong University jointly with Hunan Agricultural University and Shanghai Academy of Agricultural Sciences was also awarded the second prize of the National Science and Technology Progress Award List of the list, the project is the grape industry received the highest award, is the country in recent years, southern Portugal
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染料敏化太阳电池(Dye-sensitized Solar Cells, DSSCs),作为一种基于光电化学原理的光电转换器件,因其简单的制备工艺、相对低廉的成本及较高的光电转换效率而受到人们的广泛关注。与传统的硅基太阳电池不同,染料敏化太阳电池主要由光电极、染料、电解液及对电极四部分构成,其中,光电极承担着吸附染料和传导电子的作用,是DSSCs光电转换的核心环节之一。迄今为止研究最多的的光电极材
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