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ConfChem conference on educating the next generation: Green and sustainable chemistry - Greening the organic curriculum: Development of an undergraduate catalytic chemistry course (Conference Paper)

机译:ConfChem下一代教育会议:绿色和可持续化学-绿色有机课程:开发本科催化化学课程(会议论文)

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Catalysis continues to revolutionize the science and art of organic chemistry, with the 2010, 2005, and 2001 Chemistry Nobel Prizes awarded for developments in new metal-catalyzed reactions. Using catalytic strategies is additionally one of the 12 principles of green chemistry. It is therefore essential that undergraduate students learning organic synthesis be exposed to modern catalytic approaches from both a theoretical and practical perspective. Described here is the creation of a third-year laboratory-intensive undergraduate course entitled Organic Synthesis Techniques, and its focus on teaching green and sustainable chemistry principles. The course showcases seven cutting-edge catalytic methodologies including phase-transfer catalysis, organocatalysis, Lewis and Br?nsted acid catalysis, and transition-metal catalysis. Associated lectures are devoted to discussion of green chemical principles and practice with relevant industrial case studies, laboratory techniques undertaken, operative catalytic mechanisms, and instrumental methods of analysis. This communication summarizes one of the invited papers to the ConfChem online conference Educating the Next Generation: Green and Sustainable Chemistry, held from May 7 to June 30, 2010 and hosted by the ACS DivCHED Committee on Computers in Chemical Education (CCCE).
机译:催化继续革新有机化学的科学和艺术,2010年,2005年和2001年因新型金属催化反应的发展而获得了诺贝尔化学奖。另外,使用催化策略是绿色化学的12条原则之一。因此,从理论和实践的角度出发,学习有机合成的大学生必须接触现代催化方法。这里描述的是名为“有机合成技术”的三年级实验室密集型本科课程的创建,其重点是教授绿色和可持续化学原理。该课程展示了七种最先进的催化方法,包括相转移催化,有机催化,路易斯和布朗斯台德酸催化以及过渡金属催化。相关讲座专门讨论绿色化学原理和实践,以及相关的工业案例研究,所采用的实验室技术,有效的催化机理和分析手段。本交流总结了由ACS DivCHED化学教育计算机委员会(CCCE)主办的ConfChem在线会议“教育下一代:绿色与可持续化学”的受邀论文之一,该会议于2010年5月7日至6月30日举行。

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