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Yanbang Li

Nankai University ·
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Area of research
Organic Chemistry · Materials Chemistry
Research interest
Research topics from publications: Structurally Defined Water‐Soluble Metallofullerene Derivatives towards Biomedical Applications; Frontispiece: Structurally Defined Water‐Soluble Metallofullerene Derivatives towards Biomedical Applications. Representative work: Abstract Endohedral metallofullerenes (EMFs) are excellent carriers of rare‐earth element (REE) ions in biomedical applications because they preclude the release of toxic metal ions. However, existing approaches to synthesize water‐soluble EMF derivatives yield mixtures that inhibit precise drug design. Here we report the synthesis of metallobuckytrio (MBT), a three‐buckyball system, as a modular platform to develop structurally defined water‐soluble EMF derivatives with ligands by choice. Demonstrated with PEG ligands, the resulting water‐soluble MBTs show superb biocompatibility. The Gd MBTs exhibit superior T 1 relaxivity than typical Gd complexes, potentially superseding current clinical Abstract Endohedral metallofullerenes (EMFs) are excellent carriers of rare‐earth element (REE) ions in biomedical applications because they preclude the release of toxic metal ions. However, existing approaches to synthesize water‐soluble EMF derivatives yield mixtures that inhibit precise drug design. Here we report the synthesis of metallobuckytrio (MBT), a three‐buckyball system, as a modular platform to develop structurally defined water‐soluble EMF derivatives with ligands by choice. Demonstrated with PEG ligands, the resulting water‐soluble MBTs show superb biocompatibility. The Gd MBTs exhibit superior T 1 relaxivity than typical Gd complexes, potentially superseding current clinical
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Recent publications

Frontispiece: Structurally Defined Water‐Soluble Metallofullerene Derivatives towards Biomedical Applications
Angewandte Chemie International Edition 2023cited by 3position: firstdoi
Structurally Defined Water‐Soluble Metallofullerene Derivatives towards Biomedical Applications
Angewandte Chemie International Edition 2022cited by 18position: firstdoi
Structurally Defined Water‐Soluble Metallofullerene Derivatives towards Biomedical Applications
Angewandte Chemie 2022cited by 7position: firstdoi

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Frequent collaborators

· 3 papers (2022–2023)Jianyuan Zhang · Qingdao Center of Resource Chemistry and New Materials3 papers (2022–2023)Stephen Hill · University of Waterloo3 papers (2022–2023)Antonio Rodríguez‐Fortea · Florida State University3 papers (2022–2023)Ki‐Bum Lee · Rutgers, The State University of New Jersey3 papers (2022–2023) · 3 papers (2022–2023)Yao‐Wen Yeh · Princeton University3 papers (2022–2023)Yue Sun · Ministry of Education of the People's Republic of China3 papers (2022–2023)Krishnendu Kundu · Florida State University3 papers (2022–2023)Josep M. Poblet · University of Glasgow3 papers (2022–2023) · 3 papers (2022–2023) · 3 papers (2022–2023)William P. Kopcha · National Laboratory of the Rockies3 papers (2022–2023)Thierry Dubroca · Florida State University3 papers (2022–2023)Letao Yang · Rutgers, The State University of New Jersey3 papers (2022–2023)
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