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Stripe Arrays Comprising Uniform Concave Nanocrystals for Electrocatalytic Nitrate Reduction to Ammonia

  • Zihao Cheng
  • , Shuang Ma
  • , Chaoqun Ma
  • , Jean Luc Maurice
  • , Le Wei
  • , Xiaoxing Ke
  • , Tiantian Zhang
  • , Leilei Chen
  • , Boyuan Yang
  • , Shuzhao Huang
  • , Kassiogé Dembélé
  • , Tiezhen Ren
  • , Qipeng Lu
  • , Zhanbing He
  • University of Science and Technology Beijing
  • Beijing University of Technology
  • Institut polytechnique de Paris
  • Xinjiang University

Research output: Contribution to journalArticlepeer-review

Abstract

Stripe patterns provide profound insights into physicochemical properties governed by the structural characteristics of their constituent building blocks. However, simultaneously controlling the geometric shape, crystallographic features, and spatial arrangement of these building blocks remains challenging. Herein, we report the successful synthesis of stripe-patterned concave single crystals (SP-CSC) via a facile drying-mediated process. The SP-CSC structure consists of concave nanocrystal building blocks that are uniformly oriented and arranged into stripe-patterned arrays on nanosheets, integrating concave geometry, uniform orientational alignment, and stripe-patterned arrangement. The drying temperature is critical for coordinating supersaturation-driven nucleation, oriented growth, and contact-line stick-slip motion on nanosheets, ultimately leading to the formation of SP-CSC. This strategy demonstrates the potential to enhance electrocatalytic ammonia synthesis performance by regulating the structural features of building blocks in stripe-based systems. It also provides inspiration for designing precise patterns that integrate multiple structural features to explore coupled functionalities.

Original languageEnglish
Article numbere77000
JournalAdvanced Functional Materials
Volume36
Issue number65
DOIs
Publication statusPublished - 13 Aug 2026

Keywords

  • concave nanocrystals
  • electrocatalytic nitrate reduction
  • nanosheets
  • oriented growth
  • stripe patterns

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