Pt1/Ni6Co1 layered double hydroxides/N-doped graphene for electrochemical non-enzymatic glucose sensing by synergistic enhancement of single atoms and doping
Pt1/Ni6Co1 layered double hydroxides/N-doped graphene for electrochemical non-enzymatic glucose sensing by synergistic enhancement of single atoms and doping
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Pt1/Ni6Co1层状双氢氧化物/氮掺杂石墨烯通过单原子和掺杂的协同增强实现电化学非酶葡萄糖传感
DOI:
10.1007/s12274-022-4801-9
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发表时间:
2022-08
期刊:
影响因子:
9.9
通讯作者:
Minghua Zeng
中科院分区:
文献类型:
--
作者:
Baojun Long;Peiyu Cao;Yuanmeng Zhao;Qianqian Fu;Yan Mo;Yueming Zhai;Juejing Liu;Xingyi Lyu;Tao Li;Xiaofeng Guo;Changsheng Shan;Minghua Zeng
The development of novel single-atom catalysts is important for highly efficient electrochemical catalysis and sensing. In this work, a novel Pt single atoms (SAs) supported on Ni 6 Co 1 layered double hydroxides/nitrogen-doped graphene (Pt 1 /Ni 6 Co 1 LDHs/NG) was constructed for electrochemical enzyme-free catalysis and sensing towards glucose. The loading of Pt single atoms increases with doping of Co atoms that generate more anchoring sites for Pt SAs. The resulting Pt 1 /Ni 6 Co 1 LDHs/NG exhibits low oxidative potential of 0.440 V with high sensitivity of 273.78 µA·mM −1 ·cm −2 toward glucose, which are 85 mV lower and 15 times higher than those of Ni(OH) 2 , respectively. Pt 1 /Ni 6 Co 1 LDHs/NG also shows excellent selectivity and great stability during 5-week testing. Theoretical and experimental results show that the boosted performance of Pt 1 /Ni 6 Co 1 LDHs/NG originates from its stronger binding energy with glucose and the synergistic effect of Pt SAs, Co doping, and NG. This work provides a general strategy of designing highly active SACs for extending their application in electrochemical sensing.
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