A Heart-Shaped Polyoxoniobate LiV2Nb30: Synthesis, Structure, and Chemiresistive Humidity Sensing
Yi-Ying Li1, Ao-Jie Mei1, Jian Lu2
1Fujian Provincial Key Laboratory of Advanced Inorganic Oxygenated Materials, College of Chemistry, Fuzhou University, Fuzhou, Fujian, China.
Abstract:
Trace humidity is a critical parameter in environmental monitoring and industrial production processes control, but traditional humidity sensing materials suffer from limited response humidity ranges and insufficient sensitivity. In this study, a novel polyoxoniobate (PONb), H16K8Li3V2Nb30O93·18H2O (1), was successfully synthesized via a hydrothermal method by introducing vanadium into the niobium‑oxo cluster system. PONb 1 features a unique 33‑nuclear heart‑shaped cluster structure LiV2Nb30, which consists of a hollow V2Nb29 shell encapsulating a binuclear LiNb core, representing a new vanadium‑containing niobium-oxo clusters. Benefiting from its oxygen‑rich surface and the dense hydrogen‑bonding network formed between the cluster and lattice water molecules, PONb 1 exhibits sensitive chemiresistive humidity-sensing performance, achieving a high response for wide humidity ranges and a low detection limit of 176 ppm along with high cyclic stability, significantly surpassing most reported humidity‑sensing materials. This work not only enriches the structural diversity of PONb, but also provides new insights for the development of trace‑level chemiresistive humidity sensing.
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