Liu Hang, Zhang Juan, Xu Xinxin, Wang Qiang
Department of Chemistry, College of Science, Northeastern University, Shenyang, 110819, P. R. China.
Key Laboratory of Electromagnetic Processing of Materials, MOE, Northeastern University, Shenyang, 110819, P. R. China.
Chemistry. 2020 Apr 1;26(19):4403-4409. doi: 10.1002/chem.201905606. Epub 2020 Mar 12.
Capacitive deionization is a promising technique in sea water desalination. Compared with common electrodes, mixed capacitive-deionization electrodes exhibit better performance in sea water desalination because they integrate pseudocapacitance and electric double-layer capacitance in one system. Herein, a 3D binder-free mixed capacitive-deionization electrode was fabricated by direct electrodeposition of SiW O and polyaniline on a 3D exfoliated graphite carrier. In this electrode, SiW O /polyaniline composite particles with a size of about 100-120 nm are dispersed homogenously on the 3D exfoliated graphite carrier. Its specific capacitance reaches 352 F g at 1 A g . With increasing current from 1 to 20 A g , the specific capacitance only decays by 32 %. When employed in sea water desalination, the performance of this mixed capacitive-deionization electrode is also excellent. At 1.2 V, the salt adsorption capacity of this mixed electrode reaches 23.1 mg g with a salt adsorption rate of 1.38 mg g min in 500 mg L NaCl. The performance of this electrode is well retained after 30 cycles. The excellent sea water desalination performance originates from the synergistic effect between SiW O and polyaniline. This work has developed polyoxometalate as a new material for capacitive-deionization electrodes.
电容去离子技术在海水淡化领域颇具前景。与普通电极相比,混合电容去离子电极在海水淡化方面表现更优,因为它们在一个系统中集成了赝电容和双电层电容。在此,通过在三维剥离石墨载体上直接电沉积硅钨酸盐和聚苯胺制备了一种三维无粘结剂混合电容去离子电极。在该电极中,尺寸约为100 - 120纳米的硅钨酸盐/聚苯胺复合颗粒均匀分散在三维剥离石墨载体上。其在1 A g时的比电容达到352 F g。随着电流从1 A g增加到20 A g,比电容仅衰减32%。当用于海水淡化时,这种混合电容去离子电极的性能也很优异。在1.2 V时,该混合电极在500 mg L氯化钠中的盐吸附容量达到23.1 mg g,盐吸附速率为1.38 mg g min。经过30次循环后,该电极的性能仍能良好保持。其优异的海水淡化性能源于硅钨酸盐和聚苯胺之间的协同效应。这项工作开发了多金属氧酸盐作为电容去离子电极的新型材料。