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Light-driven Au–ZnO nanorod motors for enhanced photocatalytic degradation of tetracycline

机译:光驱动Au-ZnO纳米棒电机增强四环素光催化降解

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The abuse of antibiotics in human medicine and animal husbandry leads to the enrichment of antibiotic residues in aquatic environments, which has been a major problem of environmental pollution over the past decades. Therefore, it is urgent to develop a highly efficient approach to remove antibiotics from aquatic environments. Inspired by the motion characteristics of semiconductor-based micro-/nanomotors, a light-driven Au–ZnO nanomotor system based on vertically aligned ZnO arrays is successfully developed for the enhanced photocatalytic degradation of tetracycline (TC). Under UV light (λ = 365 nm) illumination, these Au–ZnO nanomotors exhibit a high speed in deionized water and TC solution. Due to their efficient motion capability and Au-enhanced charge separation, these light-driven Au–ZnO nanomotors removed almost all TC (40 mg L−1) within 30 min and displayed stable photocatalytic activity for four cycles without any apparent deactivation. The as-developed motor-based strategy for enhanced antibiotic degradation has excellent potential in environmental governance.
机译:在人类医学和抗生素的滥用畜牧业导致的浓缩在水生环境中抗生素残留,一直是一个主要问题的环境吗污染在过去几十年。迫切需要开发一个高效的方法把抗生素从水生环境。灵感来自于运动的特点是从汤姆斯微/马达light-driven Au-ZnO马达系统基于垂直对齐的氧化锌阵列是成功的提高光催化的发展退化四环素(TC)。(λ= 365海里)照明,这些Au-ZnO马达的展览在去离子的高速度水和TC的解决方案。运动能力和Au-enhanced电荷分离,这些light-driven Au-ZnO马达取消了几乎所有TC(40毫克L−1)在30分钟并显示稳定的光催化活性四个周期没有任何明显的失活。在发达的电机的策略增强抗生素降解具有良好的潜在的环境治理。

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