Department of Civil Engineering, Indian Institute of Technology, Kharagpur 721302, India.
Langmuir. 2010 Feb 16;26(4):2885-93. doi: 10.1021/la902950x.
Silver and gold nanoparticles have been grown on calcium alginate gel beads using a green photochemical approach. The gel served as both a reductant and a stabilizer. The nanoparticles were characterized using UV-visible spectroscopy, X-ray diffraction (XRD), scanning and transmission electron microscopy (SEM and TEM), energy dispersive X-ray (EDS), and selected area electron diffraction (SAED) analyses. The particles are spherical, crystalline, and the size ranges for both Ag and Au nanoparticles are <10 nm. It is noticed from the sorption experiment that the loading of gold on calcium alginate beads is much more compared to that of Ag. The effectiveness of the as-prepared dried alginate-stabilized Ag and Au nanoparticles as a solid phase heterogeneous catalyst has been evaluated, for the first time, on the well-known 4-nitrophenol (4-NP) reduction to 4-aminophenol (4-AP) in the presence of excess borohydride. The reduction was very efficient and followed zero-order kinetics for both Ag and Au nanocomposites. The effects of borohydride, initial 4-NP concentration, and catalyst dose were evaluated. The catalyst efficiency was examined on the basis of turnover frequency (TOF) and recyclability. The catalytic efficiency of alginate-based Ag catalyst was much more compared to that of the Au catalyst. The as-prepared new solid-phase biopolymer-based catalysts are very efficient, stable, easy to prepare, eco-friendly, and cost-effective, and they have the potential for industrial applications.
采用绿色光化学法在海藻酸钠凝胶珠上生长了银和金纳米粒子。凝胶既作为还原剂又作为稳定剂。使用紫外可见分光光度法、X 射线衍射(XRD)、扫描和透射电子显微镜(SEM 和 TEM)、能谱(EDS)和选区电子衍射(SAED)分析对纳米粒子进行了表征。这些粒子是球形的、结晶的,Ag 和 Au 纳米粒子的尺寸范围均<10nm。从吸附实验中可以看出,金在海藻酸钠珠上的负载量远高于银。首次评价了所制备的干燥海藻酸钠稳定的 Ag 和 Au 纳米粒子作为固相多相催化剂在过量硼氢化钠存在下将 4-硝基苯酚(4-NP)还原为 4-氨基酚(4-AP)的有效性。对于 Ag 和 Au 纳米复合材料,还原非常有效且遵循零级动力学。评估了硼氢化钠、初始 4-NP 浓度和催化剂剂量的影响。根据转化率(TOF)和可重复使用性检查了催化剂的效率。基于海藻酸钠的 Ag 催化剂的催化效率远高于 Au 催化剂。所制备的新型固相生物聚合物基催化剂高效、稳定、易于制备、环保且具有成本效益,具有工业应用的潜力。