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首页> 外文期刊>RSC Advances >Electrostatic assembly of gold nanorods on a glass substrate for sustainable photocatalytic reduction via sodium borohydride
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Electrostatic assembly of gold nanorods on a glass substrate for sustainable photocatalytic reduction via sodium borohydride

机译:通过硼氢化钠可持续光催化减少的玻璃基板上的金纳米棒的静电组装

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摘要

Herein we adhere gold nanorods (Au NRs) to glass coverslips through electrostatic interactions by treating the glass coverslips with (3-aminopropyl) trimethoxysilane (APTMS) and polystyrene sulfonate (PSS). These Au NR-functionalized coverslips were used to demonstrate the sustainable, catalytic reduction of 4-nitroaniline by sodium borohydride. Au NRs in solution were compared to the Au NR coverslips and were found to have pseudo-first-order observed rate constants of 1.35 x 10(-2) min(-1) (2.79 x 10(6) min(-1) per Au) and 4.12 x 10(-2) min(-1) (4.26 x 10(5) min(-1) per Au), respectively. The same catalytic reaction was executed under photolysis (1000 W Xe lamp); free NRs and Au NR-functionalized coverslips demonstrate pseudo-first-order observed rate constants of 2.15 x 10(-2) min(-1) (4.44 x 10(6) min(-1) per Au) and 6.28 x 10(-2) min(-1) (6.48 x 105 min(-1) per Au), respectively, which are two orders of magnitude faster than the only other affixed catalyst, Au NP in polymer. In addition to being scalable in Au-NR layers, a representative Au NR-functionalized coverslip was re-used for three consecutive catalysis reactions before decrease in rate, and had a rate similar to 65% of the original reaction after the fifth cycle. Thus, we have demonstrated an efficient and reusable, thermal and photochemical gold nanorod catalyst assembly that does not require a complex synthetic protocol or the use of specialized equipment.
机译:在本文中,通过用(3-氨基丙基)三甲氧基硅烷(APTMS)和聚苯乙烯磺酸盐(PSS)处理玻璃盖玻璃,通过静电相互作用将金纳米棒(AU NRS)粘附到玻璃盖玻片。这些AU NR官能化盖玻片用于通过硼氢化钠证明4-硝基苯胺的可持续催化还原。将溶液中的Au NRS与Au NR盖玻片进行比较,发现具有1.35×10(-2)min(-1)的伪定期观察率常数(2.79×10(6)分钟(-1) Au)和4.12×10(-2)min(-1)(4.26×10(5)分钟(每aU))分别。在光解(1000W XE灯)下执行相同的催化反应;免费NRS和Au NR官能化盖玻片证明了伪一阶观测的速率常数为2.15×10(-2)min(-1)(4.44×10(6)分钟(-1)每au)和6.28 x 10( -2)分别(-1)(6.48×105分钟(-1),每个Au),它们比唯一的其他固定催化剂,聚合物中的Au NP速度快两倍。除了在AU-NR层中可扩展,在降低速率之前重新使用代表性Au NR官能化盖玻片,在降低速率之前重新使用三个连续的催化反应,并且在第五周期之后的速率与原始反应的65%类似。因此,我们已经证明了不需要复杂的合成方案或使用专用设备的有效和可重复使用的热和光化学的金纳米棒催化剂组件。

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