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February 2, 2026Small3 citations

Paradox in Visible‐Light: O 2 •‒ Generation by CsPbBr 3 Perovskite Nanocrystals

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PNPravat NayekLBLipika BardhanPMPrasenjit Mal

Key Points

  • The study investigates how molecular oxygen interacts with CsPbBr3 nanocrystals, presenting both degradation and innovation roles.
  • Analysis of oxygen's role under visible-light excitation
  • Review of defect chemistry and surface passivation
  • Evaluation of photocatalytic pathways in CsPbBr3 nanocrystals
  • Oxygen generates superoxide radical anions that destabilize the crystal lattice
  • These reactive species facilitate unique aerobic photocatalytic reactions
  • Contradicting previous views, the instability allows for innovative chemical opportunities.

Abstract

ABSTRACT CsPbBr 3 nanocrystals are often dismissed as unstable under ambient conditions, with molecular oxygen seen as their chief adversary. In this Perspective, we overturn this perception by reframing oxygen as both a catalyst of degradation and a catalyst of innovation. Under visible‐light excitation, oxygen readily converts into reactive species such as superoxide radical anions, which destabilize the lattice but simultaneously unlock unique aerobic photocatalytic pathways. We highlight how this paradox, instability as reactivity, positions CsPbBr 3 not merely as fragile optoelectronic materials but as adaptive nanocatalysts for selective bond constructions and oxidative transformations. By integrating insights from defect chemistry, surface passivation, and synthetic methodology, we argue that the so‐called weakness of these nanocrystals can be transforms into their greatest strength: a platform where environmental sensitivity is leveraged as a chemical opportunity.

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Cite This Study

Nayek et al. (2026) studied this question.

synapsesocial.com/papers/6980fd18c1c9540dea80edd2https://doi.org/10.1002/smll.202511891
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