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Promoted Non-enzymatic Glucose Sensor Based on Synergistic Effect of Hydrothermal Synthesized Ni(OH)_(2)-Graphene Nanocomposite
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作者 CAI Yuqing CUI Qingyan +2 位作者 ZHANG Huanrong MA Xinlei XUE Mianqi 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2024年第5期914-921,共8页
Although glucose electrochemical sensors based on enzymes play a dominant role in market,their stability remains a problem due to the inherent nature of enzymes.Therefore,glucose sensors that are independent on enzyme... Although glucose electrochemical sensors based on enzymes play a dominant role in market,their stability remains a problem due to the inherent nature of enzymes.Therefore,glucose sensors that are independent on enzymes have attracted more attention for the development of stable detection devices.Here we present an enzyme-free glucose sensor based on Ni(OH)_(2)and reduced graphene oxide(rGO).The as-fabricated sensor still exhibits excellent electrocatalytic activity for detecting glucose under enzyme independent conditions.The enhanced catalytic performance may due to synergistic effect as follows:(i)the interaction between the Ni2+andπelectron of graphene induces the formation of theβ-phase Ni(OH)_(2)with higher catalytic activity;(ii)the frozen dry process works as a secondary filtration,getting rid of poorly formed Ni(OH)_(2)particles with low catalytic activity;(iii)the rGO network with good conductivity provides a good electronic pathway for promoting electron transfer to reduce the response time.Based on the synergistic effect,the sensor exhibits a wide linear detection range from 0.2µmol/L to 1.0µmol/L and a low detection limit(0.1µmol/L,S/N=3).The excellent detection performance,as well as the easy and low-cost preparation method,suggests the promising applicability of the sensor in the glucose detection market. 展开更多
关键词 Glucose sensing non-enzyme sensor GRAPHENE 2D material Ni(OH)_(2)nanosheet
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Synthesis of hollow Prussian blue cubes as an electrocatalyst for the reduction of hydrogen peroxide 被引量:1
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作者 Qinglin SHENG Dan ZHANG +1 位作者 Yu SHEN Jianbin ZHENG 《Frontiers of Materials Science》 SCIE CSCD 2017年第2期147-154,共8页
A cubic Prussian blue (PB) with the hollow interior was successfully synthesized by direct dissociation followed by a controlled self-etching process. The etching process also made hollow Prussian blue (HPB) a por... A cubic Prussian blue (PB) with the hollow interior was successfully synthesized by direct dissociation followed by a controlled self-etching process. The etching process also made hollow Prussian blue (HPB) a porous structure. SEM, TEM and XRD were employed to confirm the structure and morphology of the prepared materials. Then HPB and chitosan (CS) were deposited on a glassy carbon electrode (GCE), used to determine H202. The amperometric performance of HPB/CS/GCE was investigated. It was found that the special structure of HPB exhibits enhanced performance in the H202 sensing. 展开更多
关键词 Prussian blue hollow structure hydrogen peroxide sensor non-enzyme ELECTROCATALYST
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Fluorescence triggered by ligand-protein hydrophobic interaction
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作者 LIU ZhenZhen DU LuPei LI MinYong 《Science China Chemistry》 SCIE EI CAS 2013年第11期1667-1670,共4页
Hydrophobic fluorescence:Tan and his colleagues recently introduced a brand new chemotype of environment-sensitive fluorescent turn-on probes to detect the hydrophobic ligand-binding domain by using SBD fluorophore.Th... Hydrophobic fluorescence:Tan and his colleagues recently introduced a brand new chemotype of environment-sensitive fluorescent turn-on probes to detect the hydrophobic ligand-binding domain by using SBD fluorophore.The design strategy described in this report generalized the environment sensitivity turn-on mechanism to recognize a specific protein,which provides a robust breakthrough for interchanging fluorescence in conventional small-molecule fluorescent imaging. 展开更多
关键词 non-enzyme protein environment-sensitive probe turn-on fluorescence SBD fluorophore
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