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Boosting Photoelectrochemical Water Oxidation of BiVO <sub>4</sub> Photoanodes With an Iron‐Based Metal–Organic Framework as a Hole Transport Layer

Wiley journal article reports using an iron-based metal–organic framework as a hole-transport layer to boost photoelectrochemical water oxidation on BiVO4 photoanodes. The source is a published research article without additional operational or geographic details.

Scheme 9. Products of the 1,3-Dipolar Cycloaddition Reaction Between Carbonyl Ylide Dipoles and Alkenyl or Alkynyl Dipolarophiles. Modified from M. Hodgson, D.; H. Labande, A.; Muthusamy, S. In Organic Reactions; John Wiley & Sons, Inc.: 2004.
Illustrative image: Scheme 9. Products of the 1,3-Dipolar Cycloaddition Reaction Between Carbonyl Ylide Dipoles and Alkenyl or Alkynyl Dipolarophiles. Modified from M. Hodgson, D.; H. Labande, A.; Muthusamy, S. In Organic Reactions; John Wiley & Sons, Inc.: 2004. — YickChongLam/Wikimedia Commons, CC BY-SA 3.0

Categories: science-and-space, technology

Generated scores

Scores are based on the cited reporting and use a 1–10 scale. Read the methodology.

Confidence
6/10
Geographic reach
1/10
Global importance
3/10
Impact magnitude
3/10
Positivity
7/10
Urgency
1/10

Why it matters

The paper reports a method that improves photoelectrochemical water oxidation performance in BiVO4 photoanodes.

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