National Creative Research Initiative (CRI) Center for Multi-Dimensional Directed Nanoscale Assembly, Department of Material Science and Engineering, KAIST , Daejeon 34141, Republic of Korea.
Pohang Accelerator Laboratory (PAL), Pohang University of Science and Technology (POSTECH) , Pohang 37673, Republic of Korea.
ACS Appl Mater Interfaces. 2016 Jan 27;8(3):1571-7. doi: 10.1021/acsami.5b10297. Epub 2016 Jan 14.
Electrochemical oxygen redox reactions are the crucial elements for energy conversion and storage including fuel cells and metal air batteries. Despite tremendous research efforts, developing high-efficient, low-cost, and durable bifunctional oxygen catalysts remains a major challenge. We report a new class of hybrid material consisting of subnanometer thick amorphous cobalt hydroxide anchored on NCNT as a durable ORR/OER bifunctional catalyst. Although amorphous cobalt species-based catalysts are known as good OER catalysts, hybridizing with NCNT successfully enhanced ORR activity by promoting a 4e reduction pathway. Abundant charge carriers in amorphous cobalt hydroxide are found to trigger the superior OER activity with high current density and low Tafel slope as low as 36 mV/decade. A remarkably high OER turnover frequency (TOF) of 2.3 s(-1) at an overpotential of 300 mV was obtained, one of the highest values reported so far. Moreover, the catalytic activity was maintained over 120 h of cycling. The unique subnanometer scale morphology of amorphous hydroxide cobalt species along with intimate cobalt species-NCNT interaction minimizes the deactivation of catalyst during prolonged repeated cycles.
电化学氧氧化还原反应是能量转换和存储的关键元素,包括燃料电池和金属空气电池。尽管已经进行了大量的研究,但开发高效、低成本和耐用的双功能氧催化剂仍然是一个主要挑战。我们报告了一类由亚纳米厚的无定形钴氢氧化物锚定在 NCNT 上的新型混合材料,作为一种耐用的 ORR/OER 双功能催化剂。尽管基于无定形钴物种的催化剂被认为是良好的 OER 催化剂,但与 NCNT 混合成功地通过促进 4e 还原途径提高了 ORR 活性。在无定形钴氢氧化物中发现了丰富的载流子,从而引发了具有高电流密度和低 Tafel 斜率(低至 36 mV/decade)的优异 OER 活性。在 300 mV 的过电势下,获得了高达 2.3 s(-1)的高 OER 周转频率(TOF),这是迄今为止报道的最高值之一。此外,催化活性在 120 小时的循环中保持不变。无定形氢氧化物钴物种的独特亚纳米级形态以及钴物种与 NCNT 的紧密相互作用,最大限度地减少了催化剂在长时间重复循环中的失活。