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Synthesis and Characterizations of Novel Ca-Mg-Ti-Fe-Oxides Based Ceramic Nanocrystals and Flexible Film of Polydimethylsiloxane Composite with Improved Mechanical and Dielectric Properties for Sensors

机译:新型Ca-Mg-Ti-Fe-氧化物基陶瓷纳米晶体和具有改善的机械和介电性能的聚二甲基硅氧烷复合材料的柔性膜的合成和表征

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摘要

Armalcolite, a rare ceramic mineral and normally found in the lunar earth, was synthesized by solid-state step-sintering. The in situ phase-changed novel ceramic nanocrystals of Ca-Mg-Ti-Fe based oxide (CMTFOx), their chemical reactions and bonding with polydimethylsiloxane (PDMS) were determined by X-ray diffraction, infrared spectroscopy, and microscopy. Water absorption of all the CMTFOx was high. The lower dielectric loss tangent value (0.155 at 1 MHz) was obtained for the ceramic sintered at 1050 °C (S1050) and it became lowest for the S1050/PDMS nanocomposite (0.002 at 1 MHz) film, which was made by spin coating at 3000 rpm. The excellent flexibility (static modulus ≈ 0.27 MPa and elongation > 90%), viscoelastic property (tanδ = E″/E′: 0.225) and glass transition temperature (Tg: −58.5 °C) were obtained for S1050/PDMS film. Parallel-plate capacitive and flexible resistive humidity sensors have been developed successfully. The best sensing performance of the present S1050 (3000%) and its flexible S1050/PDMS composite film (306%) based humidity sensors was found to be at 100 Hz, better than conventional materials.
机译:Armalcolite是一种稀有的陶瓷矿物,通常在月球土壤中发现,是通过固态逐步烧结法合成的。通过X射线衍射,红外光谱和显微镜确定了Ca-Mg-Ti-Fe基氧化物(CMTFOx)的原位相变新型陶瓷纳米晶体,它们的化学反应以及与聚二甲基硅氧烷(PDMS)的键合。所有CMTFOx的吸水率都很高。对于在1050°C(S1050)烧结的陶瓷,其介电损耗正切值较低(在1 MHz为0.155),而对于S1050 / PDMS纳米复合材料(在1 MHz为0.002)膜而言,其介电损耗正切值最低。 3000 rpm。对于S1050 / PDMS膜,获得了优异的柔韧性(静态模量≈0.27 MPa,伸长率> 90%),粘弹性(tanδ= E''/ E':0.225)和玻璃化转变温度(Tg:-58.5°C)。平行板电容式和柔性电阻式湿度传感器已成功开发。发现目前的S1050(3000%)及其基于柔性S1050 / PDMS复合膜(306%)的湿度传感器的最佳感测性能为100 Hz,优于常规材料。

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