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苯并三氮唑基乙酸HOF的制备及质子导电性能研究——推荐一个绿色综合化学实验
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作者 孟祥茹 余一泓 +2 位作者 江远帆 刘宇阳 李纲 《大学化学》 CAS 2022年第7期156-162,共7页
氢键有机框架(HOFs)是一类由有机构筑单元通过分子间氢键自组装而成的新型晶态固体材料,具有孔径可调、低密度、含有丰富氢键网络的结构特点,因而在质子导电研究领域备受关注。本实验切合该领域的研究前沿,以水为溶剂,采用一步法制备苯... 氢键有机框架(HOFs)是一类由有机构筑单元通过分子间氢键自组装而成的新型晶态固体材料,具有孔径可调、低密度、含有丰富氢键网络的结构特点,因而在质子导电研究领域备受关注。本实验切合该领域的研究前沿,以水为溶剂,采用一步法制备苯并三氮唑基乙酸HOF (简称HOF1),通过元素分析、红外光谱、粉末X射线衍射等手段对其组成和结构进行表征。之后采用交流阻抗法测试其在三种相对湿度(75%、85%以及98%RH)和60–100℃之间的质子导电率,进而通过计算活化能推断其质子导电机理。本实验难度适中,综合多种测试手段,可以使学生了解质子导电领域的研究前沿知识、激发科研兴趣,训练科研能力。 展开更多
关键词 氢键有机框架 苯并三氮唑基乙酸 绿色化学 质子导电 综合化学实验
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双乙酰基二茂铁的合成及其与1,10-邻菲啰啉之间的光配体交换反应产物剖析--推荐一个新颖有趣的综合化学实验
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作者 孟祥茹 李纲 《大学化学》 CAS 2021年第6期154-159,共6页
首先以二茂铁和乙酰氯为原料,通过Friedel-Crafts酰基化反应制备1,1’-二乙酰基二茂铁(DAF),此过程涉及低温控制、无水无氧操作、萃取、减压蒸馏、重结晶等基本操作;然后利用DAF的光敏性以及1,10-邻菲啰啉(phen)的强螯合能力,在可见光... 首先以二茂铁和乙酰氯为原料,通过Friedel-Crafts酰基化反应制备1,1’-二乙酰基二茂铁(DAF),此过程涉及低温控制、无水无氧操作、萃取、减压蒸馏、重结晶等基本操作;然后利用DAF的光敏性以及1,10-邻菲啰啉(phen)的强螯合能力,在可见光的照射下进行配体交换反应:phen取代乙酰基环戊二烯配体并得到配合物[Fe(phen)_(3)](C_(5)H4COCH_(3))_(2)·CH_(3)CN·2H_(2)O。最后借助粉末X射线衍射、元素分析、红外光谱、核磁共振氢谱等手段确定光反应产物的组成。本实验难度适中,测试手段多样,使得大三或者大四的本科生能够在综合化学实验(I)以及无机、分析、有机化学实验的基础上,独立完成一个基本的科研训练过程。 展开更多
关键词 1 1’-二乙酰基二茂铁 1 10-邻菲啰啉 光配体交换反应 综合化学实验
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Pm67, a new powdery mildew resistance gene transferred from Dasypyrum villosum chromosome 1V to common wheat(Triticum aestivum L.) 被引量:6
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作者 Ruiqi Zhang Chuanxi Xiong +7 位作者 Huanqing Mu Ruonan Yao xiangru meng Lingna Kong Liping Xing Jizhong Wu Yigao Feng Aizhong Cao 《The Crop Journal》 SCIE CSCD 2021年第4期882-888,共7页
Powdery mildew, caused by the biotrophic fungus Blumeria graminis f. sp. tritici(Bgt), is a global disease that poses a serious threat to wheat production. To explore additional resistance gene, a wheatDasypyrum villo... Powdery mildew, caused by the biotrophic fungus Blumeria graminis f. sp. tritici(Bgt), is a global disease that poses a serious threat to wheat production. To explore additional resistance gene, a wheatDasypyrum villosum 1 V#5(1 D) disomic substitution line NAU1813(2 n = 42) with high level of seedling resistance to powdery mildew was used to generate the recombination between chromosomes 1 V#5 and1 D. Four introgression lines, including t1 VS#5 ditelosomic addition line NAU1815, t1 VL#5 ditelosomic addition line NAU1816, homozygous T1 DL·1 VS#5 translocation line NAU1817, and homozygous T1 DS·1 VL#5 translocation line NAU1818 were developed from the selfing progenies of 1 V#5 and 1 D double monosomic line that derived from F1 hybrids of NAU1813/NAU0686. All of them were characterized by fluorescence in situ hybridization, genomic in situ hybridization, 1 V-specific markers analysis, and powdery mildew tests at different developmental stages. A new powdery mildew resistance gene named Pm67 was physically located in the terminal bin(FL 0.70–1.00) of 1 VS#5. Lines with Pm67 exhibited seedling stage immunity and tissue-differentiated reactions at adult plant stage. The sheaths, stems, and spikes of the Pm67 line were still immune, but the leaves showed a low degree of susceptibility.Microscopic observation showed that most penetration attempts were stopped in association with papillae on the sheath, and colonies cannot form conidia on the susceptible leaf of Pm67 line at adult plant stage, suggesting that the defence layers of the Pm67 line is tissue-differentiated. Thus, the T1 DL·1 VS#5 translocation line NAU1817 provides a new germplasm in wheat breeding for improvement of powdery mildew resistance. 展开更多
关键词 WHEAT Dasypyrum villosum Powdery mildew Pm67
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