![]() Influences of differently-oriented Cu 3(HITP) 2 NFAs-based FETs on the electrical properties were studied, optimally oriented Cu 3(HITP) 2 NFAs-based FETs showed good mobility of 5.09 cm 2/V The strong interaction between polar groups on the polymer chains and metal ions promotes the nucleation of Cu 3(HITP) 2, steric hindrance makes particles of Cu 3(HITP) 2 with uniform size, morphology, and good crystallinity during nucleation by liquid phase epitaxial growth (LPE). Herein, active layers of field-effect transistor (FETs) devices and chemiresistor gas sensors with high performance were constructed by loading Cu 3(HITP) 2 (HITP = 2,3,6,7,10,11-hexaiminotriphenylene) in situ-axial anchoring on oriented nanofiber arrays prepared via electrospinning. However, metal-organic framework materials have poor machinability due to their predominant powder-like nature, and their presence as the active layer in a device can seriously affect the performance and utility of the device. Metal–organic framework (MOF) films are essential for numerous sensor and device applications.
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