[1] Saltiel A R,Kahn C R.Insulin signalling and the regulation of glucose and lipid metabolism[J].Nature,2001,414(6865):799-806.
[2] Tian K,Prestgard M,Tiwari A.A review of recent advances in nonenzymatic glucose sensors[J].Materials Science and Engineering:C,2014,41:100-118.
[3] Huang Y X,Dong X C,Shi Y,et al.Nanoelectronic biosensors based on CVD grown graphene[J].Nanoscale,2010,2:1485-1488.
[4] Takada K,Ito S.Alkaline vapor oxidation synthesis and electrocatalytic activity toward glucose oxidation of CuO/ZnO composite nanoarrays[J].Applied Surface Science,2013,277:192-200.
[5] Bera R K,Park H J,Ryoo R.Co3O4 nanosheets on zeolite-templated carbon as an efficient oxygen electrocatalyst for a zinc-air battery[J].Journal of Materials Chemistry A,2019,DOI:10.1039/C9TA01482A.
[6] Qi J,Zhang W,Cao R.Porous materials as highly efficient electrocatalysts for the oxygen evolution reaction[J].Chem Cat Chem,2018,10:1206-1220.
[7] Chen J,Wu X F,Selloni A.Electronic structure and bonding properties of cobalt oxide in the spinel structure[J].Physical Review B,2011,83(24):245204.
[8] Su Y Y,Luo B B,Zhang J Z.A controllable cobalt oxide/Au hierarchically nanostructured electrode for non-enzymatic glucose sensing[J].Analytical Chemistry,2016,88(3):1617-1624.
[9] Choudhury T,Saied S O,Sullivan J L,et al.Reduction of oxides of iron,cobalt,titanium and niobium by low-energy ion bombardment[J].Journal of Physics D Applied Physics,1989,22(8):1185-1195.
[10] Casella I G,Gatta M.Study of the electrochemical deposition and properties of cobalt oxide species in citrate alkaline solutions[J].Journal of Electroanalytical Chemistry,2002,534(1):31-38.
[11] Chen T,Li X W,Qiu C C,et al.Electrochemical sensing of glucose by carbon cloth-supported Co3O4/PbO2 core-shell nanorod arrays[J].Biosensors and Bioelectronics,2014,53:200-206.
[12] Ding Y,Wang Y,Su L,et al.Electrospun Co3O4 nanofibers for sensitive and selective glucose detection[J].Biosensors and Bioelectronics,2010,26(2):542-548.
[13] Ding L J,Zhao M G,Fan S S,et al.Preparing Co3O4 urchin-like hollow microspheres self-supporting architecture for improved glucose biosensing performance[J].Sensors and Actuators B:Chemical,2016,235:162-169.
[14] Hou C T,Xu Q,Yin L,et al.Metal-rganic framework template synthesis of Co3O4 nanoparticles for direct glucose and H2O2 detection[J].Analyst,2012,137(24):5803-5808.
[15] Soomro R A,Nafady A,Ibupoto Z H,et al.Development of sensitive non-enzymatic glucose sensor using complex nanostructures of cobalt oxide[J].Materials Science in Semiconductor Processing,2015,34:373-381.
[16] Hoa L T,Chung J S,Hur S H.A highly sensitive enzyme-free glucose sensor based on Co3O4 nanoflowers and 3D graphene oxide hydrogel fabricated via hydrothermal synthesis[J].Sensors and Actuators B:Chemical,2016,223:76-82.
[17] Fan S S,Zhao M G,Ding L J,et al.Synthesis of 3D hierarchical porous Co3O4 film by eggshell membrane for non-enzymatic glucose detection[J].Journal of Electroanalytical Chemistry,2016,775:52-57.
[18] Khun K,Ibupoto Z H,Liu X,et al.The ethylene glycol template assisted hydrothermal synthesis of Co3O4 nanowires;structural characterization and their application as glucose non-enzymatic sensor[J].Materials Science and Engineering:B,2015,194:94-100.
[19] Kang L Q,He D P,Bie L L,et al.Nanoporous cobalt oxide nanowires for non-enzymatic electrochemical glucose detection[J].Sensors and Actuators B:Chemical,2015,220:888-894.
基金资助
国家自然科学基金(21403020)