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Pencil graphite as electrode platform for free chlorine sensors and energy storage devices

机译:铅笔石墨作为游离氯传感器和能量存储装置的电极平台

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Multifunctional and low-cost electrode materials are desirable for the next-generation sensors and energy storage applications. This paper reports the use of pencil graphite as an electrode for dual applications that include the detection of free residual chlorine using electro-oxidation process and as an electrochemical energy storage cathode. The pencil graphite is transferred to cellulose paper by drawing ten times and applied for the detection of free residual chlorine, which shows a sensitivity of 27 μA mM -1 cm -2 with a limit of detection of 88.9 μM and linearity up to 7 mM. The sample matrix effect study for the commonly interfering ions such as NO 3 - , SO 4 2- , CO 3 2- , Cl - , HCO 3 - shows minimal impact on free residual chlorine detection. Pencil graphite then used after cyclic voltammogram treatment as a cathode in the aqueous Zn/Al-ion battery, showing an average discharge potential plateau of ~1.1 V, with a specific cathode capacity of ~54.1 mAh g -1 at a current of 55 mA g -1 . It maintains ~95.8% of its initial efficiency after 100 cycles. Results obtained from the density functional theory calculation is consistent with the electro-oxidation process involved in the detection of free residual chlorine, as well as intercalation and de-intercalation behavior of Al 3+ into the graphite layers of Zn/Al-ion battery. Therefore, pencil graphite due to its excellent electro-oxidation and conducting properties, can be successfully implemented as low cost, disposable and green material for both sensor and energy-storage applications.
机译:对于下一代传感器和能量存储应用,期望多功能和低成本电极材料。本文报告使用铅笔石墨作为双应用的电极,包括使用电氧化过程检测自由残余氯并作为电化学能量存储阴极。铅笔石墨通过绘制十次转移到纤维素纸上,并施加用于检测游离残余氯,其表示27μAmm-1cm -2的灵敏度,其检测限为88.9μm,线性度高达7mm。用于通常干扰离子的样品基质效应研究,如NO 3 - ,SO 4 2-,CO 3 2-,Cl - ,HCO 3 - 表示对游离残余氯检测的最小影响。铅笔石墨然后在循环伏安照片处理后用作Zn / Al离子电池水溶液中的阴极,显示平均放电电位平台〜1.1V,特定的阴极容量为55 mA的电流为54.1mAhg -1 g -1。在100个循环后,它在其初始效率的初始效率中保持〜95.8%。从密度泛函理论计算获得的结果与在游离残余氯的检测中涉及的电氧化过程一致,以及Al 3+的插层和去嵌入行为进入Zn / Al离子电池的石墨层中。因此,由于其优异的电氧化和传导性能,铅笔石墨可以成功地实现为传感器和能量储存应用的低成本,一次性和绿色材料。

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