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Rationally designed graphene channels for real-time sodium ion detection for electronic tongue
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作者 Chung Won Lee Sang Eon Jun +8 位作者 Seung Ju Kim Tae Hyung Lee Sol A.Lee Jin Wook Yang Jin Hyuk Cho Shinyoung Choi Cheol-joo Kim Soo Young Kim Ho Won Jang 《InfoMat》 SCIE CSCD 2023年第7期43-58,共16页
Monitoring taste-inducing ions and molecules continuously in liquids or solutions is of great considerable matter for the realization of the electronic tongue(E-tongue).Particularly from the five major tastes,the high... Monitoring taste-inducing ions and molecules continuously in liquids or solutions is of great considerable matter for the realization of the electronic tongue(E-tongue).Particularly from the five major tastes,the highly selective,sensitive detection of Na^(+)in real-time is prioritized.Prioritization is due to the saltiness of food is the key ingredient in most meals.Nevertheless,existing Na^(+)detecting devices have relatively low performances of selectivity,sensitivity,and lack of on–off functions.Additionally,conventional devices significantly deteriorate in capac-ity due to repetitive usage or lifetime shortage by degradation of the sensing mate-rial.Herein,a graphene-based channel was rationally designed by the facile decoration of Calix[4]arene and Nafion to address this issue.They act as a receptor and a molecular sieve,respectively,to enhance selectivity and sensitivity and elon-gate the life expectancy of the device.This device was merged with a microfluidic channel to control the injection and withdrawal of solutions to fulfill dynamic on–off functions.The fabricated device has highly selective,sensitive Na^(+)detection properties compared to other 10 molecule/ionic species.Dynamic on–off functions of the device were available,also possesses a long lifespan of at least 220 days.Additionally,it can precisely discriminate real beverages containing Na^(+),which can be observed by principal component analysis plot.These features offer the possibility of ascending to a platform for E-tongues in near future. 展开更多
关键词 electronic tongue graphene microfluidic channels Na^(+)sensors solution-gated field-effect transistors
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纳米氧化铈掺杂菊芋桔杆芯碳材料的制备及对日落黄的检测
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作者 马先鸣 汪璐 +2 位作者 陶亮亮 叶礼卉 刘健 《合肥工业大学学报(自然科学版)》 CAS 北大核心 2023年第9期1284-1291,共8页
文章采用热解经硝酸铈浸渍的菊芋秸秆芯(Jerusalem artichoke straw,JAS)制备负载氧化铈纳米颗粒的生物碳材料,表征CeO_(2)/JAS材料的理化性质,并分析其在电化学应用方面的潜力。该材料被修饰在电解质溶液栅控石墨烯场效应晶体管(soluti... 文章采用热解经硝酸铈浸渍的菊芋秸秆芯(Jerusalem artichoke straw,JAS)制备负载氧化铈纳米颗粒的生物碳材料,表征CeO_(2)/JAS材料的理化性质,并分析其在电化学应用方面的潜力。该材料被修饰在电解质溶液栅控石墨烯场效应晶体管(solution-gated graphene field-effect transistor,SGGT)的栅极上,在模拟的软饮料体系中完成对色素的检测,其中对日落黄的响应最好,该修饰的栅极对日落黄的检测限为300 nmol/L,灵敏度曲线斜率为29.2。一系列实验结果表明,CeO_(2)/JAS材料可以很好地提升对日落黄的检测性能。因此,该研究为其在电化学领域的应用提供了一定参考,并且对农业废弃物资源再利用与食品安全检测均具有一定的意义。 展开更多
关键词 菊芋秸秆芯(JAS) 热解 纳米材料 电化学 电解质溶液栅控石墨烯场效应晶体管(sggt) 日落黄
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冠醚功能化的栅控石墨烯场效应晶体管的制备及对汞离子的检测
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作者 曹磊 陈美君 +4 位作者 袁刚 常钢 张修华 王升富 何汉平 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2022年第4期33-41,共9页
Hg^(2+)是一种具有生物蓄积性和毒性的重金属,对环境和人类健康均可造成严重损害.因此,开发便捷的Hg^(2+)传感器非常必要.本文基于溶液栅控石墨烯场效应晶体管的优异性能,通过氮硫杂冠醚的尺寸效应以及冠醚与Hg^(2+)的螯合作用来特异性... Hg^(2+)是一种具有生物蓄积性和毒性的重金属,对环境和人类健康均可造成严重损害.因此,开发便捷的Hg^(2+)传感器非常必要.本文基于溶液栅控石墨烯场效应晶体管的优异性能,通过氮硫杂冠醚的尺寸效应以及冠醚与Hg^(2+)的螯合作用来特异性识别Hg^(2+),制备了一种冠醚功能化栅极的溶液栅控石墨烯场效应晶体管(SGGT)传感器.该SGGT传感器因其固有的信号放大功能而比传统电化学检测Hg^(2+)更灵敏,其检出限为1×10^(−12) mol/L,比传统电化学传感器降低了2~3个数量级,在1×10^(−12)~1×10^(−7) mol/L检测范围内,狄拉克点的变化值与目标物浓度的对数值之间存在良好的线性关系,同时具有极高的选择性.对实际湖水样品的检测效果良好,对Hg^(2+)的检测标准偏差为1.10%~3.77%.本文结果表明,该晶体管传感器可以对Hg^(2+)进行高选择和高灵敏检测. 展开更多
关键词 溶液栅控场效应晶体管 石墨烯 冠醚 Hg^(2+)
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Construction of highly accessible single Co site catalyst for glucose detection 被引量:3
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作者 Can Xiong Lin Tian +19 位作者 Chunchun Xiao Zhenggang Xue Fangyao Zhou Huang Zhou Yafei Zhao Min Chen Qiuping Wang Yunteng Qu Yidong Hu Wenyu Wang Yan Zhang Xiao Zhou Zhiyuan Wang Peiqun Yin Yu Mao Zhen-Qiang Yu Yueqiang Cao Xuezhi Duan Lei Zheng Yuen Wu 《Science Bulletin》 SCIE EI CSCD 2020年第24期2100-2106,M0005,M0006,共9页
The development of high-performance glucose sensors is an urgent need, especially for diabetes mellitus diagnosis. However, the glucose monitoring is conventionally operated in an invasive finger-prick manner and thei... The development of high-performance glucose sensors is an urgent need, especially for diabetes mellitus diagnosis. However, the glucose monitoring is conventionally operated in an invasive finger-prick manner and their noninvasive alternatives largely suffered from the relatively poor sensitivity, selectivity, and stability, resulted from the lack of robust and efficient catalysts. In this paper, we design a concave shaped nitrogen-doped carbon framework embellished with single Co site catalyst(Co SSC) by selectively controlling the etching rate on different facet of carbon substrate, which is beneficial to the diffusion and contact of analyte. The Co SSC prompts a significant improvement in the sensitivity of the solutiongated graphene transistor(SGGT) devices, with three orders of magnitude better than those of SGGT devices without catalysts. Our findings expand the field of single site catalyst in the application of biosensors, diabetes diagnostics and personalized health-care monitoring. 展开更多
关键词 Glucose sensor Sensitivity SELECTIVITY Single site catalyst solution-gated graphene transistor
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