Song Tian-Wei, Xu Cong, Sheng Zhu-Tao, Yan Hui-Kun, Tong Lei, Liu Jun, Zeng Wei-Jie, Zuo Lu-Jie, Yin Peng, Zuo Ming, Chu Sheng-Qi, Chen Ping, Liang Hai-Wei
Hefei National Research Center for Physical Sciences at the Microscale, Department of Chemistry, University of Science and Technology of China, Hefei, 230026, China.
College of Chemistry and Materials Science, Anhui Normal University, Wuhu, 241000, China.
Nat Commun. 2022 Oct 31;13(1):6521. doi: 10.1038/s41467-022-34037-7.
Supported ordered intermetallic compounds exhibit superior catalytic performance over their disordered alloy counterparts in diverse reactions. But the synthesis of intermetallic compounds catalysts often requires high-temperature annealing that leads to the sintering of metals into larger crystallites. Herein, we report a small molecule-assisted impregnation approach to realize the general synthesis of a family of intermetallic catalysts, consisting of 18 binary platinum intermetallic compounds supported on carbon blacks. The molecular additives containing heteroatoms (that is, O, N, or S) can be coordinated with platinum in impregnation and thermally converted into heteroatom-doped graphene layers in high-temperature annealing, which significantly suppress alloy sintering and insure the formation of small-sized intermetallic catalysts. The prepared optimal PtCo intermetallics as cathodic oxygen-reduction catalysts exhibit a high mass activity of 1.08 A mg at 0.9 V in H-O fuel cells and a rated power density of 1.17 W cm in H-air fuel cells.
负载型有序金属间化合物在多种反应中表现出优于无序合金对应物的催化性能。但是金属间化合物催化剂的合成通常需要高温退火,这会导致金属烧结成更大的微晶。在此,我们报道了一种小分子辅助浸渍方法,以实现一系列金属间催化剂的通用合成,该系列催化剂由负载在炭黑上的18种二元铂基金属间化合物组成。含杂原子(即O、N或S)的分子添加剂在浸渍过程中可与铂配位,并在高温退火时热转化为杂原子掺杂的石墨烯层,这显著抑制了合金烧结,并确保形成小尺寸的金属间催化剂。制备的最佳PtCo金属间化合物作为阴极氧还原催化剂,在氢氧燃料电池中于0.9 V时表现出1.08 A mg的高质量活性,在氢空气燃料电池中额定功率密度为1.17 W cm。