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Efficient Photocatalytic Bilirubin Removal over the Biocompatible Core/Shell P25/g-C3N4 Heterojunctions with Metal-free Exposed Surfaces under Moderate Green Light Irradiation

机译:在中度绿光照射下具有生物相容性的核/壳P25 / g-C3N4异质结与无金属暴露表面上的高效光催化胆红素去除

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摘要

Highly-monodispersed g-C3N4/TiO2 hybrids with a core/shell structure were synthesized from a simple room temperature impregnation method, in which g-C3N4 was coated through self-assembly on the commercially available Degussa P25 TiO2 nanoparticles. Structural and surface characterizations showed that the presence of g-C3N4 notably affected the light absorption characteristics of TiO2. The g-C3N4/TiO2 heterojunctions with metal-free exposed surfaces were directly used as biocompatible photocatalysts for simulated jaundice phototherapy under low-power green-light irradiation. The photocatalytic activity and stability of g-C3N4/TiO2 were enhanced relative to pure P25 or g-C3N4, which could be ascribed to the effective Z-scheme separation of photo-induced charge carriers in g-C3N4/TiO2 heterojunction. The photoactivity was maximized in the 4 wt.% g-C3N4-coated P25, as the bilirubin removal rate under green light irradiation was more than 5-fold higher than that under the clinically-used blue light without any photocatalyst. This study approves the future applications of the photocatalyst-assisted bilirubin removal in jaundice treatment under moderate green light which is more tolerable by humans.
机译:通过简单的室温浸渍方法合成了具有核/壳结构的高度单分散的g-C3N4 / TiO2杂化物,其中g-C3N4通过自组装涂覆在可商购的Degussa P25 TiO2纳米颗粒上。结构和表面表征表明,g-C3N4的存在显着影响TiO2的光吸收特性。具有无金属暴露表面的g-C3N4 / TiO2异质结直接用作生物相容性光催化剂,用于在低功率绿光照射下进行模拟黄疸光疗。相对于纯P25或g-C3N 4 ,g-C3N4 / TiO2的光催化活性和稳定性得到增强,这可以归因于gC < sub> 3 N 4 / TiO 2 异质结。在4 wt。%gC 3 N 4 涂覆的P25中,光活性达到最大,这是因为绿光照射下胆红素的去除率比后者高5倍以上。在临床使用的蓝光下没有任何光催化剂。这项研究批准了光催化辅助胆红素去除在人类更能耐受的中度绿光下黄疸治疗中的未来应用。

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