Levy-Ontman Oshrat, Biton Shira, Shlomov Boris, Wolfson Adi
Department of Chemical Engineering, Sami Shamoon College of Engineering, Basel/Bialik Sts., Beer-Sheva 8410001, Israel.
Polymers (Basel). 2018 Jun 12;10(6):659. doi: 10.3390/polym10060659.
The investigation of the use of polysaccharides derived from natural sources to support metal catalysis has been the focus of several studies. Even though these molecules seem to be attractive materials, their full potential for use in support of heterogeneous catalysis still needs to be revealed. To that end, we developed a new preparation technique for polysaccharide-based palladium catalysts by immobilizing the palladium phosphine complexes on various renewable polysaccharides. The Suzuki cross-coupling in ethanol, using PdCl₂(TPPTS)₂ supported by various polysaccharides, was determined by gas chromatography and compared to homogeneous free-catalyst support. The PdCl₂(TPPTS)₂, that was immobilized on red algae supports, was successfully used as a heterogeneous catalyst in the Suzuki cross-coupling reaction, yielding high activity, higher than that of the homogeneous complex, without leaching. The FTIR spectrometry of representative heterogeneous polysaccharide-based TPPTS⁻PdCl₂ catalysts was compared to that of native polysaccharide and polysaccharide-based TPP⁻PdCl₂ catalysts, indicated on new bands, suggesting that the heterogenization occurs via interactions between the sulfonate group on the TPPTS and the hydroxyl groups on the polysaccharides. EDS and XPS analysis were also performed, confirming that the Pd complex was embedded within the -carrageenan. A comparison of SEM images of -carrageenan preparations also shed light on the interaction occurring between the polysaccharides and the TPPTS.
对源自天然来源的多糖用于支持金属催化的研究一直是多项研究的重点。尽管这些分子似乎是有吸引力的材料,但其在支持多相催化方面的全部潜力仍有待揭示。为此,我们通过将钯膦配合物固定在各种可再生多糖上,开发了一种基于多糖的钯催化剂的新制备技术。使用各种多糖负载的PdCl₂(TPPTS)₂在乙醇中进行的铃木交叉偶联反应,通过气相色谱法测定,并与均相游离催化剂载体进行比较。负载在红藻载体上的PdCl₂(TPPTS)₂成功地用作铃木交叉偶联反应中的多相催化剂,具有高活性,高于均相配合物,且无浸出。将代表性的基于多糖的多相TPPTS⁻PdCl₂催化剂的FTIR光谱与天然多糖和基于多糖的TPP⁻PdCl₂催化剂的FTIR光谱进行比较,显示出新的谱带,表明多相化是通过TPPTS上的磺酸根基团与多糖上的羟基之间的相互作用发生的。还进行了EDS和XPS分析,证实钯配合物嵌入了卡拉胶中。对卡拉胶制剂的SEM图像比较也揭示了多糖与TPPTS之间发生的相互作用。