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首页> 外文期刊>ACS applied materials & interfaces >Toward Efficient Preconcentrating Photocatalysis: 3D g-C3N4 Monolith with Isotype Heterojunctions Assembled from Hybrid 1D and 2D Nanoblocks
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Toward Efficient Preconcentrating Photocatalysis: 3D g-C3N4 Monolith with Isotype Heterojunctions Assembled from Hybrid 1D and 2D Nanoblocks

机译:朝向高效的预融化光催化:3D G-C3N4单型,具有由混合1D和2D纳米块组装的同种型异质功能

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摘要

The macroscopic integration of the microscopic catalyst is one of the most promising strategies for photocatalytic technology in facing practical applications. However, in addition to the unsatisfactory photoactivated exciton separation, a new problem restricting the catalytic efficiency is the unmatched kinetics between the reactant diffusion and the photochemical reaction. Here, we report an isotype heterojunctional three-dimensional g-C3N4 monolith which is assembled from the hybrid building blocks of the nanowires and nanosheets. Benefiting from its hierarchically porous network and abundant heterojunctions, this catalytic system exhibits inherently promoted efficiency in light absorption and exciton separation, thus leading to a desirably improved photocatalytic performance. Furthermore, thanks to the structural and functional advantages of the constructed g-C3N4 monolith, a novel strategy of preconcentrating photocatalysis featuring the successive filtration, adsorption, and photocatalysis has been further developed, which could technically coordinate the kinetic differences and result in over-ten-time enhancement on the efficiency compared with the traditional photocatalytic system. Beyond providing new insights into the structural design and innovative application of the monolithic photocatalyst, this work may further open up novel technological revolutions in sewage treatment, air purification, microbial control, etc.
机译:微观催化剂的宏观整合是光催化技术面向实际应用中最有希望的策略之一。然而,除了不令人符合的光活化的激子分离之外,限制催化效率的新问题是反应物扩散和光化学反应之间的无与伦比的动力学。在这里,我们报告了由纳米线和纳米晶片的混合构建块组装的同种型异质三维G-C3N4整体。从其分层多孔网络和丰富的杂交中受益,这种催化系统在光吸收和激子分离中表现出固有的促进效率,从而导致理想地改善的光催化性能。此外,由于构建的G-C3N4整体的结构和功能优势,进一步开发了一种具有连续过滤,吸附和光催化的预浓度光催化的新策略,从而可以在技术上协调动力学差异并导致超过十个与传统光催化系统相比效率的时间增强。除了为整体光催化剂的结构设计和创新应用提供新的洞察,这项工作可能进一步开辟了污水处理,空气净化,微生物控制等的新颖技术转速。

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