Sahoo Rakesh K, Yun Je Moon, Kim Kwang Ho
Global Frontier R&D Center for Hybrid Interface Materials, Pusan National University, 2, Busandaehak-ro 63beon-gil, Geumjeong-gu, Busan 46241, Republic of Korea.
Division of Advanced Materials Engineering (Polymer Materials Engineering Major), Dong Eui University, 176, Eomwang-ro, Busanjin-gu, Busan 47340, Republic of Korea.
ACS Appl Mater Interfaces. 2021 Dec 29;13(51):60966-60977. doi: 10.1021/acsami.1c14873. Epub 2021 Dec 13.
The synthesis of dual-function molybdenum (Mo)-complex carbonous sponges is reported for elucidating their utilization as positive and negative electrodes in electrochemical devices and their applicability to the active oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) in electrocatalytic devices. Molybdenum (Mo)-coordinated polyvinyl alcohol gel is converted into a porous Mo-complex nitrogen-rich carbonous sponge (MNCS) via microwave and low-temperature-annealing processes as a positive electrode. This MNCS was further thermally treated at a higher temperature to prepare a more carbonized Mo-complex N-doped carbon sponge (cMNCS) as a negative electrode. Both sponges were lightweight and porous and exhibited excellent specific capacitances of 562 F g as a positive MNCS electrode and 937 F g as a negative cMNCS electrode. The asymmetric supercapacitor assembled using them reveals a power density of 887.5 W kg at an energy density of 36 Wh kg, in addition to a retention rate of >95% after 5000 cycles. We furthermore demonstrate the electrocatalytic capabilities of these materials with overpotentials of -170 and -220 mV for the HER and 1.70 and 1.53 V for the OER at a current density of 10 mA cm using a water-splitting electrocatalyzer.
报道了双功能钼(Mo)复合碳海绵的合成,以阐明其在电化学装置中作为正负极的应用,以及在电催化装置中对析氧反应(OER)和析氢反应(HER)的适用性。通过微波和低温退火工艺,将钼(Mo)配位的聚乙烯醇凝胶转化为多孔的富氮钼复合碳海绵(MNCS)作为正极。将该MNCS在更高温度下进一步热处理,制备出碳化程度更高的钼复合氮掺杂碳海绵(cMNCS)作为负极。两种海绵均质轻且多孔,作为正极的MNCS电极和作为负极的cMNCS电极分别表现出优异的比电容,分别为562 F g和937 F g。使用它们组装的不对称超级电容器在能量密度为36 Wh kg时,功率密度为887.5 W kg,此外在5000次循环后的保留率>95%。我们还使用析水电催化剂,在电流密度为10 mA cm时,证明了这些材料对HER的过电位为-170和-220 mV,对OER的过电位为1.70和1.53 V的电催化能力。