N‐bridged acyclic trimeric poly‐cyclodiphosphazanes: highly tuneable cyclodiphosphazane building blocks

We have synthesized a completely new family of acyclic trimeric cyclodiphosphazane compounds comprising NH, NiPr, NtBu and NPh bridging groups. In addition, the first NH-bridged acyclic dimeric cyclophosphazane has been produced. The trimeric species display highly tuneable characteristics so that t...

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Bibliographic Details
Main Authors: Shi, Xiaoyan, León, Felix, Sim, Ying, Quek, Shina, Hum, Gavin, Khoo, Joycelyn Yi Xin, Ng, Zi Xuan, Par, Mian Yang, Ong, How Chee, Singh, Varun Kumar, Ganguly, Rakesh, Clegg, Jack K., Díaz, Jesús, García, Felipe
Other Authors: School of Physical and Mathematical Sciences
Format: Article
Language:English
Published: 2023
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Online Access:https://hdl.handle.net/10356/170456
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Institution: Nanyang Technological University
Language: English
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Summary:We have synthesized a completely new family of acyclic trimeric cyclodiphosphazane compounds comprising NH, NiPr, NtBu and NPh bridging groups. In addition, the first NH-bridged acyclic dimeric cyclophosphazane has been produced. The trimeric species display highly tuneable characteristics so that the distance between the terminal N(H)R moieties can be readily modulated by the steric bulk present in the bridging groups (ranging from ≈6 to ≈10 Å). Moreover, these species exhibit pronounced topological changes when a weak non-bonding NH⋅⋅⋅π aryl interaction is introduced. Finally, the NH-bridged chloride binding affinities have been calculated and benchmarked along with the existing experimental data available for monomeric cyclodiphosphazanes. Our results underscore these species as promising hydrogen bond donors for supramolecular host–guest applications.