Aksaray University, Faculty of Science and Letters, Department of Chemistry, 68100 Aksaray, Turkey.
Carbohydr Polym. 2018 Sep 1;195:45-52. doi: 10.1016/j.carbpol.2018.04.064. Epub 2018 Apr 21.
The most important parameters for the fabrication of metallic nanoparticles are their synthesis method and the selection of stabilizer. These properties influence durability, shape, size, distribution, and catalytic performance of metallic nanoparticles. Therefore, a novel agar/pectin composite (APC) was designed in this study as a stabilizer, and then palladium nanocatalyst (Pd NPs@APC) was synthesized using green protocol which contains no hazardous reducing agents. The results of the thermal analysis showed that Pd NPs@APC had highly thermal durability (239 °C). Palladium nanoparticles were in spherical shape and homogeneously dispersed on APC surface. In addition, the particle sizes of palladium nanoparticles were determined as 34-54 nm. Catalytic activity of Pd NPs@APC was investigated in (i) Suzuki-Miyaura cross coupling reactions by using microwave irradiation to decrease high reaction time and energy as well as to provide clean synthesis and (ii) the reduction of o-nitroaniline to 1,2-benzenediamine at room temperature in water. Catalytic tests showed that Pd NPs@APC had high activity and sustainability performance against both Suzuki-Miyaura reactions and the reduction of o-nitroaniline.
制备金属纳米粒子的最重要参数是其合成方法和稳定剂的选择。这些性质影响金属纳米粒子的耐久性、形状、尺寸、分布和催化性能。因此,本研究设计了一种新型的琼脂/果胶复合(APC)作为稳定剂,然后使用不含有害还原剂的绿色方案合成钯纳米催化剂(Pd NPs@APC)。热分析结果表明,Pd NPs@APC 具有很高的热稳定性(239°C)。钯纳米粒子呈球形,均匀分散在 APC 表面。此外,钯纳米粒子的粒径被确定为 34-54nm。通过使用微波辐射来减少高反应时间和能量,提供清洁的合成,研究了 Pd NPs@APC 在(i)Suzuki-Miyaura 交叉偶联反应中的催化活性,以及(ii)在室温下在水中将邻硝基苯胺还原为 1,2-苯二胺。催化试验表明,Pd NPs@APC 对 Suzuki-Miyaura 反应和邻硝基苯胺的还原均具有高活性和可持续性。