Singh Gurpreet, Sharma Moolchand, Vaish Rahul
School of Engineering, Indian Institute of Technology Mandi, Mandi, Himachal Pradesh 175005, India.
J Adv Res. 2018 Dec 28;16:35-42. doi: 10.1016/j.jare.2018.12.005. eCollection 2019 Mar.
A ferroelectric BaCaTiZrO (BCZTO) ceramic was prepared using a solid-state reaction route. A coating of candle soot was provided on poled and unpoled BCZTO samples. X-ray diffraction and Raman spectroscopy confirmed the presence of the graphite form of carbon in the candle soot. Scanning Kelvin probe microscopy determined that the highest surface potentials were ∼34 mV and 1.5 V in the unpoled and poled BCZTO samples, respectively. The candle soot was found to adsorb ∼65%, 80%, and 90% of the methylene blue dye present in acidic, neutral, and basic media, respectively, within 3 h. In both the poled and unpoled cases, the BCZTO samples coated with candle soot showed greater adsorption capacities than the uncoated BCZTO sample. In the cases of poled samples coated with candle soot, the adsorption was found to be greater in the case of candle soot coated on a positively charged surface than that for candle soot coated on a negatively charged BCZTO surface in an acidic medium. In a basic medium, the adsorption was found to be greater in the case of candle soot coated on a negatively charged surface than that for candle soot coated on a positively charged BCZTO surface. The contact angle of the candle soot-coated BCZTO sample was found to be hydrophobic (∼149°). The contact angle decreased (∼149-133°) with an increase in temperature (30-70 °C) in the case of candle soot coated on the positive surface of a poled BCZTO sample. The contact angle increased (∼139-149°) with an increase in temperature (30-70 °C) in the case of candle soot coated on the negative surface of a poled BCZTO sample. Internal electric field-assisted (associated with ferroelectric materials) adsorption could be a potential technique to improve adsorption processes.
采用固态反应路线制备了铁电BaCaTiZrO(BCZTO)陶瓷。在极化和未极化的BCZTO样品上涂覆了一层蜡烛烟灰。X射线衍射和拉曼光谱证实了蜡烛烟灰中存在石墨形式的碳。扫描开尔文探针显微镜测定,未极化和极化的BCZTO样品中的最高表面电位分别约为34 mV和1.5 V。发现在3小时内,蜡烛烟灰分别吸附了酸性、中性和碱性介质中存在的约65%、80%和90%的亚甲基蓝染料。在极化和未极化的情况下,涂有蜡烛烟灰的BCZTO样品均比未涂覆的BCZTO样品表现出更大的吸附容量。在涂有蜡烛烟灰的极化样品中,发现在酸性介质中,涂覆在带正电表面的蜡烛烟灰的吸附量大于涂覆在带负电的BCZTO表面的蜡烛烟灰。在碱性介质中,发现在带负电表面涂覆蜡烛烟灰的吸附量大于在带正电的BCZTO表面涂覆蜡烛烟灰的吸附量。发现涂有蜡烛烟灰的BCZTO样品的接触角为疏水(约149°)。在极化的BCZTO样品正表面涂覆蜡烛烟灰的情况下,接触角随温度升高(30 - 70°C)而减小(约149 - 133°)。在极化的BCZTO样品负表面涂覆蜡烛烟灰的情况下,接触角随温度升高(30 - 70°C)而增大(约139 - 149°)。内部电场辅助(与铁电材料相关)吸附可能是一种改善吸附过程的潜在技术。