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Alternate Energy Sources for Sustainable Organic Synthesis

机译:可持续有机合成的替代能源

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Organic Chemistry plays an important role in energy, information, materials, population, health, environment and implementation of defence plan. Organic chemists therefore, have the greatest responsibility to devise methods of carrying out organic syntheses, which will reduce or even eliminate the by-products and solve the problem of environmental pollution from the source. One of the methods to achieve this is using non-conventional energy sources, such as microwave, ultrasound, and photochemical chemistry, in conjugation with non-toxic solvents, which dramatically reduces energy waste and reaction time. Experiments synergising these alternate energy sources like microwave sonication, photosonication or microwave photochemistry, have gained high popularity as cost- effective green strategies. Pooling the advantages of alternate energy sources with biocatalysis is another novel avenue of sustainable synthesis. Organic electrosynthesis has also emerged as an environmentally benign technique for the construction of C-C and C-hetero bonds. Highlights of significant developments in these areas define the scope of the present discussion.
机译:有机化学在能源、信息、材料、人口、健康、环境和国防计划的实施方面发挥着重要作用。因此,有机化学家对设计进行有机合成的方法负有最大的责任,这将减少甚至消除副产物,并从源头上解决环境污染问题。实现这一目标的方法之一是使用非常规能源,如微波、超声波和光化学化学,与无毒溶剂偶联,这大大减少了能源浪费和反应时间。微波超声处理、光子化或微波光化学等替代能源协同作用的实验作为具有成本效益的绿色策略而广受欢迎。将替代能源的优势与生物催化相结合是可持续合成的另一种新途径。有机电合成也已成为构建 C-C 和 C-异键的一种环境友好型技术。这些领域重大发展的重点决定了本讨论的范围。

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