Seku Kondaiah, Bhagavanth Reddy G, Hussaini Syed Sulaiman, Pejjai Babu, Hussain Mushtaq, Reddy D Madhusudan, Khazaleh Mahmoud A K, Mangatayaru Girija
Department of Engineering, Civil Section (Applied Sciences - Chemistry), University of Technology and Applied Sciences-Shinas, Al-Aqur, Shinas 324, Oman..
Department of Chemistry, Palamuru University, Mahabubnagar, Telangana 509001, India.
Int J Biol Macromol. 2022 Jun 1;209(Pt A):912-922. doi: 10.1016/j.ijbiomac.2022.04.070. Epub 2022 Apr 18.
We report a facile microwave-assisted synthesis of palladium nanoparticles (PdNPs) using Bael gum (BG) and it's carboxymethylated (CMBG) derivative. The prepared nanoparticles (BG@PdNPs and CMBG@PdNPs) were evaluated for antibacterial and catalytic activity in the reduction of organic dye pollutants. The developed synthetic method is simple, low cost and eco-friendly, wherein the process requires no additional reducing or capping agents. The CMBG was prepared via etherification reaction between BG and monochloroacetic acid using Williamson synthesis method. The PdNPs were synthesized using BG and CMBG as stabilizers and reducing agents. The PdNPs were found to be well dispersed spherical, with the crystalline size of the order of 7-21 nm. The results showed that the CMBG@PdNPs were smaller in size (7 ± 2 nm) than those capped with BG@PdNPs (10 ± 2 nm). The catalytic ability of CMBG@PdNPs was examined for the reduction of Methyl Orange (MO), Methyl Red(MR), and Rhodamine-B (RhB) in the presence of NaBH. The results showed that CMBG@PdNPs exhibited a higher catalytic ability than BG@PdNPs. Moreover, it was found that CMBG@PdNPs served several times as a retrievable and reusable catalyst which is stable even after six cycles of reaction. The CMBG@PdNPs and BG@PdNPs showed excellent antibacterial activity. The results indicate that CMBG@PdNPs have greater potential application as a catalyst in the reduction of organic pollutants and antibacterial activity.
我们报道了一种使用印度枳椇胶(BG)及其羧甲基化(CMBG)衍生物通过简便的微波辅助合成钯纳米颗粒(PdNPs)的方法。对制备的纳米颗粒(BG@PdNPs和CMBG@PdNPs)进行了抗菌活性评估以及在还原有机染料污染物方面的催化活性评估。所开发的合成方法简单、低成本且环保,该过程无需额外的还原剂或封端剂。CMBG是通过使用威廉姆森合成法使BG与一氯乙酸之间发生醚化反应制备的。使用BG和CMBG作为稳定剂和还原剂合成了PdNPs。发现PdNPs为分散良好的球形,晶体尺寸约为7 - 21纳米。结果表明,CMBG@PdNPs的尺寸(7±2纳米)比用BG@PdNPs包覆的那些(10±2纳米)更小。在硼氢化钠存在的情况下,检测了CMBG@PdNPs对甲基橙(MO)、甲基红(MR)和罗丹明 - B(RhB)的还原催化能力。结果表明,CMBG@PdNPs比BG@PdNPs表现出更高的催化能力。此外,发现CMBG@PdNPs可作为可回收和可重复使用的催化剂使用多次,即使在六个反应循环后仍保持稳定。CMBG@PdNPs和BG@PdNPs表现出优异的抗菌活性。结果表明,CMBG@PdNPs在还原有机污染物和抗菌活性方面作为催化剂具有更大的潜在应用价值。