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Introducing 'Green' and 'Nongreen' Aspects of Noble Metal Nanoparticle Synthesis: An Inquiry-Based Laboratory Experiment for Chemistry and Engineering Students

机译:贵金属纳米颗粒合成的“绿色”和“非绿色”方面介绍:化学和工程专业学生基于查询的实验室实验

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摘要

In recent years, nanoscience and nanotechnology have been drawing enormous attention due to the numerous applications of nanomaterials. In an attempt to nurture interest towards these areas in young minds and to develop the next generation of environmentally conscious scientists and engineers, this new laboratory module focuses on the green and nongreen aspects of noble metal nanoparticles (NPs) synthesis. The element of novelty is represented by the guided, inquiry-based exploration of alternative, green fabrication methods using environmentally friendly reducing agents (e.g., tea extracts, coffee, honey, coconut oil, and banana peel). The inquiry-based learning was developed according to the five essential features laid by the National Research Council (NRC), and was successfully implemented after science and engineering students gained theoretical knowledge and hands-on experience with conventional, nongreen fabrication methods of colloidal Silver and gold NPs (i.e., the Lee-Meisel and Turkevich methods). The student assignments and evaluations demonstrated that this inquiry-based laboratory increased students' interest in green nanochemistry, provided them with new laboratory skills, and stimulated their critical thinking.
机译:近年来,由于纳米材料的大量应用,纳米科学和纳米技术已经引起了极大的关注。为了激发年轻人对这些领域的兴趣,并培养下一代具有环保意识的科学家和工程师,这个新的实验室模块着重于贵金属纳米颗粒(NPs)合成的绿色和非绿色方面。新颖性的要素是通过使用基于环境的还原剂(例如茶提取物,咖啡,蜂蜜,椰子油和香蕉皮)进行的基于绿色的替代制造方法的指导性调查研究来代表的。基于探究的学习是根据美国国家研究委员会(NRC)确立的五个基本特征而开发的,并且在理工科学生获得了有关胶体银和铜的常规,非绿色制造方法的理论知识和动手经验后得以成功实施。金纳米颗粒(即Lee-Meisel和Turkevich方法)。学生的作业和评估表明,这个基于查询的实验室提高了学生对绿色纳米化学的兴趣,为他们提供了新的实验室技能,并激发了他们的批判性思维。

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