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In-situ synthesis of Cu2O/reduced graphene oxide composite as effective catalyst for ozone decomposition

机译:原位合成Cu 2 O /脱墨烯氧化物复合材料作为臭氧分解的有效催化剂

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摘要

Nowadays, highly efficient decomposition of ozone is still technologically challenging, especially in the presence of high humidity levels. In this study, Cu2O/reduced graphene oxide composite (Cu2O/rGO) is in-situ synthesized by reducing a mixed solution of Cu2+ and GO. This developed catalytic system exhibits 100% ozone (20 ppm O-3/air) decomposition efficiency at room temperature with high stability. Importantly, the ozone conversion could be still above 96% at high relative humidity levels (ca. 90%) after 10 h of continuous operation. The excellent performance is suggested to be attributed to the highly active ultrafine Cu2O nanoparticles heterogeneously nucleated on rGO, which facilitate necessary electron density by the transfer of it between Cu2O and rGO phases.
机译:如今,高效的臭氧分解仍在技术上挑战,特别是在存在高湿度水平的情况下。 在该研究中,通过还原Cu 2+的混合溶液并去,Cu 2 O / Sexing氧化物复合物(Cu2O / Rgo)原位合成。 该开发的催化系统在室温下呈现100%臭氧(20ppm O-3 /空气)分解效率,具有高稳定性。 重要的是,在连续运行10小时后,臭氧转化率仍然在高相对湿度水平(CA.90%)高于96%。 提出优异的性能是归因于在RGO上的高活性超细Cu2O纳米颗粒,其通过在Cu 2O和Rgo相之间转移来促进必要的电子密度。

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