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Extremely high efficient nanoreactor with Au@ZnO catalyst for photocatalysis

机译:具有Au @ ZnO催化剂的极高效纳米反应器,可用于光催化

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We fabricated a photocatalytic Au@ZnO@ PC (polycarbonate) nanoreactor composed of monolayered Au nanoparticles chemisorbed on conformal ZnO nanochannel arrays within the PC membrane. A commercial PC membrane was used as the template for deposition of a ZnO shell into the pores by atomic layer deposition (ALD). Thioctic acid (TA) with sufficient steric stabilization was used as a molecular linker for functionalization of Au nanoparticles in a diameter of 10 nm. High coverage of Au nanoparticles anchored on the inner wall of ZnO nanochannels greatly improved the photocatalytic activity for degradation of Rhodamine B. The membrane nanoreactor achieved 63% degradation of Rhodamine B within only 26.88 ms of effective reaction time owing to its superior mass transfer efficiency based on Damkohler number analysis. Mass transfer limitation can be eliminated in the present study due to extremely large surface-to-volume ratio of the membrane nanoreactor.
机译:我们制造了一种光催化Au @ ZnO @ PC(聚碳酸酯)纳米反应器,该反应器由化学吸附在PC膜内共形ZnO纳米通道阵列上的单层Au纳米颗粒组成。使用商用PC膜作为通过原子层沉积(ALD)将ZnO壳沉积到孔中的模板。具有足够的空间稳定性的硫辛酸(TA)用作分子连接子,用于官能化直径为10 nm的Au纳米颗粒。锚固在ZnO纳米通道内壁上的Au纳米颗粒的高覆盖率大大提高了对罗丹明B降解的光催化活性。由于其卓越的传质效率,该膜纳米反应器在有效反应时间内仅26.88毫秒就实现了63%的罗丹明B降解。关于Damkohler数分析。由于膜纳米反应器的表面积与体积之比非常大,因此在本研究中可以消除传质限制。

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