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Metalloid-bridged π-conjugated materials: Synthetic strategies to Opto-electronic, catalytic and biological applications

  • Ashanul Haque
  • , Rayya A. Al-balushi
  • , Khalaf M. Alenezi
  • , S.M. Nisharul Haque
  • , Md. Mushtaque
  • , Linli Xu
  • , Miao Zhang
  • , Wai-Yeung Wong
  • , Muhammad S. Khan
  • , Paul Raithby
  • University of Ha'il
  • A'Sharqiyah University
  • Aligarh Muslim University
  • Lalit Narayan Mithila University
  • The Hong Kong Polytechnic University
  • Sultan Qaboos University

Research output: Contribution to journalArticlepeer-review

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Abstract

Research on π-conjugated materials incorporating main group elements has flourished over the last few decades and continues to grow at an unprecedented rate. The interest in this research area is primarily driven by the need to replace inorganic semiconductors with cheaper, more environmentally friendly alternatives. Inorganic semiconductors can be costly to fabricate, difficult to process, pose challenges in large-area applications and post-use disposal. Furthermore, substituting a main group element such as C, N, S, or Se with one or more heavier metalloids leads to interactions of the low-lying p/σ* orbitals of the metalloids with the π* orbitals of the conjugated system, thereby altering the energy levels. This intriguing feature has sparked significant research interest. This review highlights the advances made in the field of metalloid-bridged π-conjugated materials, covering their synthesis, photophysical properties, structure-property relationships and applications. Additionally, we outline future directions and challenges in this research area.
Original languageEnglish
Article number216978
JournalCoordination Chemistry Reviews
Volume546
Early online date13 Aug 2025
DOIs
Publication statusPublished - 1 Jan 2026

Data Availability Statement

No data was used for the research described in the article.

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