Raguindin Ricky Kristan M, Mercado Candy C
Department of Mining, Metallurgical and Materials Engineering, College of Engineering, University of the Philippines Diliman Quezon City 1101 Philippines
RSC Adv. 2023 Aug 14;13(35):24211-24227. doi: 10.1039/d3ra04092e. eCollection 2023 Aug 11.
Rapid and more environment-friendly means of gold nanoparticle synthesis is necessary in many applications, as in ion detection. Leaf extracts have become effective and economical reducing agents for gold nanoparticle formation, however, effects of extract combinations have not been thoroughly investigated. With the exploitation of combined extract effects, gold nanoparticles were synthesized then functionalized and investigated to produce selected nanoparticle systems which are capable of detecting aqueous lead(ii) ions with minimum detection limits of 10-11 ppm. The measured localized surface plasmon resonance absorption peaks of the gold nanoparticles were 541-800 nm for the synthesis and 549 nm for the functionalization. The diameters of different gold nanoparticle systems were 17-37 nm. These were mostly quasi-spherical in morphology with some rod-, triangular-, and hexagonal plate-like particles. The biosynthesis used polyphenols and acids present in the extracts in the reduction of gold ions into gold nanoparticles, and in the nanoparticle capping and stabilization. Functionalization replaced the capping compounds with alliin, -allylcysteine, allicin, and ajoene. Gold nanoparticle stability in aqueous systems was verified for two weeks up to five months. The investigations concluded the practicability of the gold nanoparticles in lead(ii) ion detection with selectivity initially verified for other divalent cations.
在许多应用中,如离子检测,快速且更环保的金纳米颗粒合成方法是必要的。叶提取物已成为金纳米颗粒形成的有效且经济的还原剂,然而,提取物组合的效果尚未得到充分研究。通过利用组合提取物的效果,合成了金纳米颗粒,然后对其进行功能化并进行研究,以制备出能够检测水溶液中铅(II)离子的选定纳米颗粒系统,其最低检测限为10 - 11 ppm。合成的金纳米颗粒的测量局部表面等离子体共振吸收峰为541 - 800 nm,功能化后的为549 nm。不同金纳米颗粒系统的直径为17 - 37 nm。这些颗粒大多呈准球形,还有一些棒状、三角形和六边形板状颗粒。生物合成利用提取物中存在的多酚和酸将金离子还原为金纳米颗粒,并用于纳米颗粒的封端和稳定化。功能化用蒜氨酸、烯丙基半胱氨酸、大蒜素和阿霍烯取代了封端化合物。在水体系中验证了金纳米颗粒长达两周至五个月的稳定性。研究得出结论,金纳米颗粒在铅(II)离子检测中具有实用性,最初已验证其对其他二价阳离子具有选择性。