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Updated: Sep 4, 2026

Ultrahigh Density Array of Vertically Aligned Small-molecular Organic Nanowires on Arbitrary Substrates
Published on: June 18, 2013
Pd-Induced Lattice Heterogeneity (Interface Compression/Bulk Stretching) in W18O49 Nanowires for Synergistically
Tianjun Hu1,2,3, Jiale Li2,3, Ying Wang2,3
1Shanxi University of Electronic Science and Technology , Linfen041000, China.
Abstract:
Hydrogen (H2) sensing demands high sensitivity, fast kinetics, and stability. Herein, we report Pd-modified W18O49 nanocomposites with unique lattice heterogeneity (interfacial lattice compression coupled with bulk lattice expansion) induced by metal-support interaction. XRD and HRTEM confirm the structural modulation: Pd loading narrows W18O49's band gap, enhances charge transfer, and optimizes oxygen vacancies. The 2%-Pd-W18O49 exhibits superior H2 sensing performance at 130 °C: a high response (∼160 to 300 ppm H2), ultra-fast response/recovery (7/10 s), excellent selectivity over interfering gases (CO, ethanol, etc.), and long-term stability of 380 days (after a simple annealing process). Synergistic effects of Pd-catalyzed H2 dissociation and lattice heterogeneity dominate the enhancement, overcoming the reduced specific surface area. This work highlights lattice heterogeneity as a novel design parameter for high-performance metal oxide semiconductor H2 sensors, promising safe H2 applications.

