Xing Ruohao, Zhou Tingsheng, Zhou Yao, Ma Ruguang, Liu Qian, Luo Jun, Wang Jiacheng
School of Materials Science and Engineering, Shanghai University, 99 Shangda Road, Shanghai, 200444, People's Republic of China.
State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, 1295 Dingxi Road, Shanghai, 200050, People's Republic of China.
Nanomicro Lett. 2018;10(1):3. doi: 10.1007/s40820-017-0157-1. Epub 2017 Sep 27.
A series of triple hierarchical micro-meso-macroporous N-doped carbon shells with hollow cores have been successfully prepared via etching N-doped hollow carbon spheres with CO at high temperatures. The surface areas, total pore volumes and micropore percentages of the CO-activated samples evidently increase with increasing activation temperature from 800 to 950 °C, while the N contents show a contrary trend from 7.6 to 3.8 at%. The pyridinic and graphitic nitrogen groups are dominant among various N-containing groups in the samples. The 950 °C-activated sample (CANHCS-950) has the largest surface area (2072 m g), pore volume (1.96 cm g), hierarchical micro-mesopore distributions (1.2, 2.6 and 6.2 nm), hollow macropore cores (~91 nm) and highest relative content of pyridinic and graphitic N groups. This triple micro-meso-macropore system could synergistically enhance the activity because macropores could store up the reactant, mesopores could reduce the transport resistance of the reactants to the active sites, and micropores could be in favor of the accumulation of ions. Therefore, the CANHCS-950 with optimized structure shows the optimal and comparable oxygen reduction reaction (ORR) activity but superior methanol tolerance and long-term durability to commercial Pt/C with a 4e-dominant transfer pathway in alkaline media. These excellent properties in combination with good stability and recyclability make CANHCSs among the most promising metal-free ORR electrocatalysts reported so far in practical applications.
通过在高温下用CO蚀刻氮掺杂的空心碳球,成功制备了一系列具有空心核的三重分级微-介-大孔氮掺杂碳壳。CO活化样品的表面积、总孔体积和微孔百分比随着活化温度从800℃升高到950℃而明显增加,而氮含量则呈现相反的趋势,从7.6原子%降至3.8原子%。吡啶型氮和石墨型氮基团在样品中的各种含氮基团中占主导地位。950℃活化的样品(CANHCS-950)具有最大的表面积(2072 m²/g)、孔体积(1.96 cm³/g)、分级微-介孔分布(1.2、2.6和6.2 nm)、空心大孔核(约91 nm)以及最高的吡啶型和石墨型氮基团相对含量。这种三重微-介-大孔体系可以协同增强活性,因为大孔可以储存反应物,介孔可以降低反应物向活性位点的传输阻力,而微孔有利于离子的积累。因此,具有优化结构的CANHCS-950在碱性介质中显示出最佳且可比的氧还原反应(ORR)活性,但甲醇耐受性和长期耐久性优于具有4e主导转移途径的商业Pt/C。这些优异的性能与良好的稳定性和可回收性相结合,使CANHCS成为迄今为止在实际应用中报道的最有前途的无金属ORR电催化剂之一。