Kim Aram, Sharma Bhawana, Kim Byeong-Su, Park Kang Hyun
Department of Chemistry and Chemistry Institute for Functional Materials, Pusan National University, Busan 609-735, Korea.
J Nanosci Nanotechnol. 2011 Jul;11(7):6162-6. doi: 10.1166/jnn.2011.4355.
Ultrasound (US), a nonconventional energy source, has become a very popular and useful technology in organic chemistry. Several examples of US-assisted reaction have indicated that high yields and short reaction times are reasonable, and applications of this energy transfer process on click reactions have been published. Stable, water-soluble copper nanoparticles (Cu NPs) were synthesized using a double-hydrophilic block copolymer as a template. The prepared Cu NPs were effective as catalysts for the [3+2] cycloaddition of azides with terminal alkynes to provide products in good yields and with high regioselectivity. An environment-friendly process of synthesizing regioselective triazoles was developed from a variety of azides with terminal alkynes, in which the water-soluble Cu NPs were utilized, under 10 min sonication. The Cu NPs can be reused three times under the present reaction conditions, without any loss of catalytic activity. Block copolymer nanoreactors were shown to be promising in creating a number of water-soluble catalytic metal NPs for a wide variety of organic transformations.
超声(US)作为一种非常规能源,已成为有机化学中非常流行且有用的技术。超声辅助反应的几个例子表明,高产率和短反应时间是合理的,并且这种能量转移过程在点击反应中的应用已有报道。使用双亲性嵌段共聚物作为模板合成了稳定的水溶性铜纳米颗粒(Cu NPs)。制备的Cu NPs作为叠氮化物与末端炔烃[3+2]环加成反应的催化剂效果良好,能以高区域选择性提供高产率的产物。利用水溶性Cu NPs,在超声处理10分钟的条件下,开发了一种由多种叠氮化物与末端炔烃合成区域选择性三唑的环保方法。在当前反应条件下,Cu NPs可重复使用三次,且催化活性无任何损失。嵌段共聚物纳米反应器在制备多种用于各种有机转化的水溶性催化金属纳米颗粒方面显示出良好的前景。