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Green synthesis and formation mechanism of cellulose nanocrystal-supported gold nanoparticles with enhanced catalytic performance

机译:纤维素纳米晶体负载的金纳米颗粒催化反应性能的绿色合成及其形成机理

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摘要

Deposition of precious metal catalysts onto the surface of various supporting materials to enhance the stability and catalytic activity is highly desired. Although extensive studies have been focused on the supported metal catalysts, their preparations are mainly based on the use of reducing agents which are not environmentally benign. Herein, we report a one-pot and green synthesis of gold nanoparticles (Au NPs) deposited on cellulose nanocrystals (CNs) under hydrothermal conditions using CNs as a reducing agent and stabilizing template. Our experimental results showed that the abundant electron-rich hydroxyl groups on the surface of CNs played a key role in the reduction and immobilization of Au NPs. The obtained nano-hybrid catalyst exhibited much better catalytic activity and stability than the unsupported Au NPs and other Au-containing catalysts for the reduction of 4-nitrophenol. These findings pave the way for the green synthesis of bio-supported nanohybrid catalysts and can spur advancements in nanocellulose-based nanohybrids for their application in sensors, antibacterial materials and electronic devices.
机译:非常需要将贵金属催化剂沉积在各种载体材料的表面上以增强稳定性和催化活性。尽管已经对担载的金属催化剂进行了广泛的研究,但是它们的制备主要基于使用对环境无害的还原剂。本文中,我们报告了使用CNs作为还原剂和稳定模板在水热条件下沉积在纤维素纳米晶体(CNs)上的一锅法和绿色合成的金纳米颗粒(Au NPs)。我们的实验结果表明,CNs表面丰富的富含电子的羟基在Au NPs的还原和固定中起着关键作用。对于还原4-硝基苯酚,所获得的纳米混合催化剂表现出比无载体的Au NPs和其他含Au的催化剂更好的催化活性和稳定性。这些发现为绿色合成生物负载的纳米杂化催化剂铺平了道路,并可以推动基于纳米纤维素的纳米杂化剂在传感器,抗菌材料和电子设备中的应用。

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