Flexible Free-Standing CuxO/Ag2O (x=1, 2) Nanowires Integrated with Nanoporous Cu-Ag Network Composite for Glucose Sensing

被引:6
|
作者
Zhang, Qian [1 ]
Li, Man [1 ]
Qin, Chunling [1 ]
Wang, Zhifeng [1 ]
Zhao, Weimin [1 ]
Li, Yongyan [1 ]
机构
[1] Hebei Univ Technol, Sch Mat Sci & Engn, Tianjin 300130, Peoples R China
基金
中国国家自然科学基金;
关键词
bimetallic; nanoporous; CuxO/Ag2O nanowires; flexibility; glucose sensor; ELECTRODES; ARRAYS;
D O I
10.3390/nano10020357
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
To improve glucose electrocatalytic performance, one efficient manner is to develop a novel Cu-Ag bimetallic composite with fertile porosity and unique architecture. Herein, the self-supported electrode with CuxO/Ag2O (x = 1, 2) nanowires grown in-situ on a nanoporous Cu-Ag network (CuxO/Ag2O@NP-CuAg) has been successfully designed by a facile two-step approach. The integrated hierarchical porous structure, the tip-converged CuxO/Ag2O nanowires combined with the interconnected porous conductive substrate, are favorable to provide more reactive sites and improve ions or electrons transportation. Compared with monometallic Cu2O nanowires integrated with nanoporous Cu matrix (Cu2O@NP-Cu), the bimetallic CuxO/Ag2O@NP-CuAg composites exhibit the enhanced electrocatalytic performance for glucose. Moreover, the higher sensitivity of similar to 1.49mA mM(-1) cm 2 in conjunction with a wider linear range of 17 mM for the CuxO/Ag2O@NP-CuAg electrode anodized for 10 min are attributed to the synergistic effect of porous structure and bimetallic CuxO/Ag2O nanowires. Particularly, the integrated CuxO/Ag2O@NP-CuAg composites possess good flexibility, which has been reported for the first time. Accordingly, the CuxO/Ag2O@NP-CuAg with excellent glucose electrocatalytic performance and good flexibility is promising to further develop as a candidate electrode material of glucose sensors.
引用
收藏
页数:8
相关论文
共 50 条
  • [31] Electrical transport and structural properties of new superionic solids in the system (Cu1-xAgxI)-(Ag2O)-(B2O3), (0.05 ≤ x ≤ 0.25)
    Suthanthiraraj, SA
    Murugesan, S
    Maruthamuthu, P
    SOLID STATE IONICS, 2001, 143 (3-4) : 413 - 423
  • [32] ELECTRICAL-CONDUCTIVITY OF (1+X)AG2O, YM2O3, (1-Y)P2O5 GLASSES
    BRANDA, F
    PERNICE, P
    ARONNE, A
    COSTANTINI, A
    BURI, A
    PHYSICS AND CHEMISTRY OF GLASSES, 1990, 31 (02): : 75 - 77
  • [33] Free-standing MXene/chitosan/Cu2O electrode: an enzyme-free and efficient biosensor for simultaneous determination of glucose and cholesterol
    HU, Tao
    ZHANG, Man
    DONG, Hui
    LI, Tong
    ZANG, Xiao-bei
    LI, Xiao
    NI, Zhong-hua
    JOURNAL OF ZHEJIANG UNIVERSITY-SCIENCE A, 2022, 23 (07): : 579 - 586
  • [34] EFFECT OF AG2O ADDITION ON THE FORMATION OF Y1BA2CU4O8 .2. THE SYNTHESIS AT AN ORDINARY PRESSURE OF OXYGEN
    OHARA, S
    MATSUDA, M
    WATANABE, Y
    TAKATA, M
    PHYSICA C, 1991, 190 (1-2): : 87 - 88
  • [35] A systematic study on polymerization and photocatalytic performance by investigating Ag2O•x(MoO3) (x=1, 2, 3, 4) photocatalysts
    Liu, Xintong
    Li, Wenjun
    Wang, Fangzhi
    Li, Hongda
    Ren, Chaojun
    Zhao, Yanjun
    CATALYSIS SCIENCE & TECHNOLOGY, 2018, 8 (21) : 5544 - 5556
  • [36] EFFECT OF AG2O ADDITION ON THE FORMATION OF Y1BA2CU4O8 .1. THE SYNTHESIS COMBINED WITH O2 HIP TECHNIQUE
    WATANABE, Y
    YANAGIDA, K
    TAKATA, M
    ISHIZAKI, K
    PHYSICA C, 1991, 190 (1-2): : 84 - 86
  • [37] Fabrication and performance of long (BixPb1-x)(2)Sr2Ca2Cu3O delta/Ag composite tapes
    LeLay, L
    Friend, CM
    Beales, TP
    CRYOGENICS, 1997, 37 (10) : 583 - 587
  • [38] Reaction of sulfur dioxide with Cu(110), Cu(100)-p(2x1)-O and Ag(110)-p(2x1)-O.
    Alemozafar, A
    Guo, XC
    Madix, RJ
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2002, 223 : U381 - U381
  • [39] Evaluation of transport properties of superionic materials in the system (Cu1-xAgxI)-(Ag2O)-(CrO3)
    Murugesan, S
    Suthanthiraraj, SA
    Maruthamuthu, P
    SOLID STATE IONICS, 2002, 154 : 621 - 628
  • [40] Unveiling the integrated characteristics of Cu-Ag co-doped CoFe2O4: Structural, morphological, magnetic, and antibacterial perspectives
    Kalia, S.
    Dhiman, V.
    Prasad, N.
    MATERIALS CHEMISTRY AND PHYSICS, 2025, 334