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Two-photon Clusteroluminescence Enabled by Through-Space Conjugation for In Vivo Bioimaging.
Zhang, Jianyu; Shen, Hanchen; Xiong, Zuping; Du, Lidong; Li, Moxin; Ou, Xinwen; Zhu, Xinyan; Lam, Jacky W Y; Liu, Tzu-Ming; Xu, Changhuo; Zhang, Haoke; Tang, Ben Zhong.
Afiliação
  • Zhang J; The Hong Kong University of Science and Technology, Department of Chemistry, HONG KONG.
  • Shen H; The Hong Kong University of Science and Technology, Department of Chemsitry, HONG KONG.
  • Xiong Z; Zhejiang University, Department of Polymer Science and Engineering, CHINA.
  • Du L; University of Macau, Faculty of Health Sciences, MACAO.
  • Li M; University of Macau, Faculty of Health Sciences, MACAO.
  • Ou X; The Hong Kong University of Science and Technology, Department of Chemistry, HONG KONG.
  • Zhu X; The Hong Kong University of Science and Technology, Department of Chemistry, HONG KONG.
  • Lam JWY; The Hong Kong University of Science and Technology, Department of Chemistry, HONG KONG.
  • Liu TM; University of Macau, Faculty of Health Sciences, MACAO.
  • Xu C; University of Macau, Faculty of Health Sciences, MACAO.
  • Zhang H; Zhejiang University, Department of Polymer Science and Engineering, CHINA.
  • Tang BZ; The Chinese University of Hong Kong - Shenzhen, School of Science and Engineering, 2001 Longxiang Boulevard, Longgang District, 518172, Shenzhen, CHINA.
Angew Chem Int Ed Engl ; : e202413751, 2024 Aug 27.
Article em En | MEDLINE | ID: mdl-39191645
ABSTRACT
Clusteroluminescence (CL) materials without largely conjugated structures have gained significant attention due to their unique photophysical properties and potential in bioimaging. However, low luminescence efficiency and short emission wavelength limit their development. This work designs three luminogens with CL properties (CLgens) by introducing n-electron-involved through-space conjugation (TSC) into diarylmethane. Apart from single-photon excited long-wavelength (688 nm) and high-efficiency (29%) CL, two-photon clusteroluminescence (TPCL) is successfully achieved in such small luminogens with only two isolated heteroatomic units. TSC stabilized in the aggregate state has been proven to realize efficient spatial electron delocalization similar to conventionally conjugated compounds. Encouraged by the excellent TPCL properties, two-photon imaging of blood vessels in vivo and biocompatibility verification utilizing CLgens are also achieved. This work illustrates the essential role of TSC in promoting nonlinear optical properties of CLgens and may facilitate further design and development of the next generation of bioprobes with excellent biocompatibility.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article