Z‐Scheme Photocatalytic Systems for Solar Water Splitting

Фотокаталитические системы Z-схемы для солнечного расщепления воды
Boon‐Junn Ng, Lutfi Kurnianditia Putri, Xin Ying Kong, Yee Wen Teh, Pooria Pasbakhsh, Siang‐Piao Chai
2020-02-13

Z-scheme photocatalysiselectron mediatorphotocatalyst sheetphotocatalytic hydrogen evolutionsolar water splitting
Abstract As the world decides on the next giant step for the renewable energy revolution, scientists have begun to reinforce their headlong dives into the exploitation of solar energy. Hitherto, numerous attempts are made to imitate the natural photosynthesis of plants by converting solar energy into chemical fuels which resembles the “Z‐scheme” process. A recreation of this system is witnessed in artificial Z‐scheme photocatalytic water splitting to generate hydrogen (H2). This work outlines the recent significant implication of the Z‐scheme system in photocatalytic water splitting, particularly in the role of electron mediator and the key factors that improve the photocatalytic performance. The Review begins with the fundamental rationales in Z‐scheme water splitting, followed by a survey on the development roadmap of three different generations of Z‐scheme system: 1) PS‐A/D‐PS (first generation), 2) PS‐C‐PS (second generation), and 3) PS‐PS (third generation). Focus is also placed on the scaling up of the “leaf‐to‐tree” challenge of Z‐scheme water splitting system, which is also known as Z‐scheme photocatalyst sheet. A detailed investigation of the Z‐scheme system for achieving H2 evolution from past to present accompanied with in‐depth discussion on the key challenges in the area of Z‐scheme photocatalytic water splitting are provided.
1
Artificial Z-scheme photocatalytic systems mimic natural photosynthesis to convert solar energy into hydrogen through water splitting.
2
The review identifies electron mediators and performance-enhancing factors as central determinants of Z-scheme photocatalytic efficiency.
3
The review traces hydrogen-evolution development from past to present and highlights unresolved challenges in Z-scheme photocatalytic water splitting.
4
Z-scheme photocatalyst sheets address the scale-up challenge of translating laboratory-scale systems into larger solar-fuel production platforms.
5
Z-scheme water-splitting systems have progressed through three generations: PS-A/D-PS, PS-C-PS, and PS-PS.

Z-scheme photocatalytic water-splitting systems for solar hydrogen production

The operating principles, electron-mediator roles, generational development, performance-enhancing factors, scale-up, and challenges of Z-scheme photocatalytic water splitting

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2020-02-13
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Boon‐Junn Ng
Lutfi Kurnianditia Putri
Xin Ying Kong
Yee Wen Teh
Pooria Pasbakhsh
Siang‐Piao Chai
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