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网络新媒体背景下基原法结合图像教学法在中药学教学实践中的应用 被引量:3
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作者 吴勇军 易亚乔 +5 位作者 葛金文 喻嵘 陈懿 王国佐 颜利晶 刘林 《教育教学论坛》 2016年第3期134-135,共2页
采用原法结合图像教学法的微课教学模式与传统讲授教学模式作为对比,探讨网络新媒体背景下中药学教学改革的新方法。教学实践后发现这一方法能促进同学们对中药本质的理解,提高中药形态、功效、性状的辨别能力,多重感官共同刺激,提高学... 采用原法结合图像教学法的微课教学模式与传统讲授教学模式作为对比,探讨网络新媒体背景下中药学教学改革的新方法。教学实践后发现这一方法能促进同学们对中药本质的理解,提高中药形态、功效、性状的辨别能力,多重感官共同刺激,提高学生学习中药学兴趣及学习主观能动性,教学效果提高。 展开更多
关键词 基原法 图像 中药学 微课 应用与探讨
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梯度引发自由基聚合体系(Ⅰ)──基原法合成超高分子量聚合物
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作者 杨万泰 刘涛 尹梅贞 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2001年第2期345-347,共3页
There are presently two ways to realize “controlled/living radical polymerization”: one is by a reversible termination or reversible chain transfer to make active polymer chains continuously propagate; the other is ... There are presently two ways to realize “controlled/living radical polymerization”: one is by a reversible termination or reversible chain transfer to make active polymer chains continuously propagate; the other is by a physical method to suppress chain termination and to prolong radical lifetime. Here we report a new method called Graduation Initiating Radical Polymerization System for realizing “controlled/living radical polymerization”. Its principle and experimental setup are as follows: firstly, initiatable groups(i.e. peroxide groups) were introduced onto the polymer substrates like LDPE film by photo-oxidation reaction; secondly, the films carried peroxide groups were put and fixed to the bottom of polymerization bottle containing monomer and solvent. Afterwards, they were made to produce radicals(by heating or reductive agent), and finally the system polymerization was initiated. Once these radicals are produced on the surface of these films, they will undergo three different processes: terminating by combination, diffusing to monomer solution and taking in monomers(polymerizing). The reactive diffusion makes this system produce “two graduation”: one is the graduation of radical concentration(i.e. the farther away from the surface of the film, the lower radical concentration); the other is the length-graduation of living chains,\{i.e.\} the farther away from the surface of the film the longer the propagating chains. By this way, we could obtain a polymerization field where the radical concentration is very low and there are no primary free radicals approximately, which are benefit to realize “controlled/living radical polymerization”. This communication reports the first experimental results based on the above idea: with benzophenone(BP) as photo-catalyst and peroxide groups introduced on the LDPE surface in a concentration 10^-8 mol/cm^2; by these peroxided films as the sources of free radicals, polyacrylamide and polyacrylic acid were obtained with molecular weights more than 20 millions. 展开更多
关键词 可控/活性聚合 梯度聚合 自由聚合 聚丙烯酸 聚丙烯酰胺 基原法 超高分子量聚合物
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