演讲嘉宾-Arben Merkoçi

Arben Merkoçi
西班牙加泰罗尼亚纳米科学与技术研究所

Arben Merkoçi教授目前是西班牙巴塞罗那大学ICREA教授,加泰罗尼亚纳米科学和纳米技术研究所纳米生物电子学和生物传感器实验组负责人,他于1991年在地拉那大学获得博士学位,其研究方向是离子选择电极在临床和环境分析方面的设计和应用研究。之后在欧洲其他研究中心及美国博士后流动站工作,主要集中在实验室芯片技术及生物传感器领域的研究。后来,他担任巴塞罗那自治大学(1997-2006)及加泰罗尼亚纳米科学和纳米技术研究所(自2006年至今)纳米实验室主任。

他的研究主要是基于生物传感器切削纳米技术及纳米科学。这些纳米生物传感器主要是基于生物分子的整合(DNA、抗体、细胞、酶)及其他微纳米结构的生物受体,主要用于环境监测或安全领域。

演讲题目:GRAPHENE-BASED BIOSENSORS—What make graphene and other 2D materials advantageous in comparison to others?
主题会场
开始时间
结束时间
内容摘要

Graphene and other 2D materials are nowadays attracting more and more scientists from both academia and industry for their various advantages with interest for several applications. Among graphene forms graphene oxide (GO) and graphene quantum dots (GQDs) display advantageous characteristics with interest for building innovative biosensing platforms and even smart devices such as nano/micromotors for a myriad of uses including sensing. This is due to their excellent capabilities ranging from easy linking to (bio)chemical/synthetic receptors to unprecedented electronic and optical properties. Quenching of the fluorescence induced by GO or photoluminescence of GQDs can easily operate in synergy with various other nanomaterials and platforms opening the way to several unprecedented biosensing strategies and unique nanomotor technologies. The rationale behind the use of GO and GQDs in several optical and electrochemical biosensing technologies as well as in building smart devices such as nano/micromotors will be explained. Taking advantage of graphene materials we are developing simple, sensitive, selective and rapid biosensing platforms and other devices with interest for various diagnostics applications. The various examples will include: a) use of graphene as novel platform in quantum dots – based microarray & laterals flow technologies taking advantages of high quenching efficiency of GO. A “turn ON by a pathogen” device will be shown as a highly sensitive detection system using plastics or paper/nanopaper substrates; b) design and application of GQDs–based sensors for contaminants detection based on the use of multifunctional composite materials that enable rapid, simple and sensitive platforms in connection to smartphone; c) A water activated graphene oxide transfer technology using wax printed membranes for fast patterning of a touch sensitive device with interest for electronic devices including sensing as well as for a cost-efficient nanomotor building technology for several applications.

Acknowledgements. We acknowledge support from EU (Graphene Flagship) and MINECO (Spain) MAT2017-87202-P. This work is also funded by the CERCA Programme / Generalitat de Catalunya. ICN2 is supported by the Severo Ochoa program from Spanish MINECO (Grant No. SEV-2013-0295).

References.
1) E. Morales-Narváez, A.Merkoçi, Advanced Materials, 2012, 24, 3298; 2) L. Baptista Pires, C. C. Mayorga-Martínez, M.Medina Sanchez, H.Monton, A.Merkoçi, ACS Nano 2016, 10, 853; 3) E. Morales-Narváez, L. Florio Sgobbi, S. Antonio Spinola Machado, A.Merkoçi, Progress in Materials Science, 2017, 86, 1.; 4. Álvarez-Diduk, J. Orozco, A. Merkoçi, Scientific Reports, 2017, 7, 976; 5.E. Morales-Narváez, L. Baptista-Pires, A. Zamora-Gálvez, A. Merkoçi, Advanced Materials, 2017, 29, 1604905; 6) L. Baptista-Pires, J. Orozco, P.Guardia, A.Merkoçi, Small, 2017, DOI: 10.1002/smll.201702746

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凯发_Arben Merkoçi

凯发

演讲嘉宾-Arben Merkoçi

Arben Merkoçi
西班牙加泰罗尼亚纳米科学与技术研究所

Arben Merkoçi教授目前是西班牙巴塞罗那大学ICREA教授,加泰罗尼亚纳米科学和纳米技术研究所纳米生物电子学和生物传感器实验组负责人,他于1991年在地拉那大学获得博士学位,其研究方向是离子选择电极在临床和环境分析方面的设计和应用研究。之后在欧洲其他研究中心及美国博士后流动站工作,主要集中在实验室芯片技术及生物传感器领域的研究。后来,他担任巴塞罗那自治大学(1997-2006)及加泰罗尼亚纳米科学和纳米技术研究所(自2006年至今)纳米实验室主任。

他的研究主要是基于生物传感器切削纳米技术及纳米科学。这些纳米生物传感器主要是基于生物分子的整合(DNA、抗体、细胞、酶)及其他微纳米结构的生物受体,主要用于环境监测或安全领域。

演讲题目:GRAPHENE-BASED BIOSENSORS—What make graphene and other 2D materials advantageous in comparison to others?
主题会场
开始时间
结束时间
内容摘要

Graphene and other 2D materials are nowadays attracting more and more scientists from both academia and industry for their various advantages with interest for several applications. Among graphene forms graphene oxide (GO) and graphene quantum dots (GQDs) display advantageous characteristics with interest for building innovative biosensing platforms and even smart devices such as nano/micromotors for a myriad of uses including sensing. This is due to their excellent capabilities ranging from easy linking to (bio)chemical/synthetic receptors to unprecedented electronic and optical properties. Quenching of the fluorescence induced by GO or photoluminescence of GQDs can easily operate in synergy with various other nanomaterials and platforms opening the way to several unprecedented biosensing strategies and unique nanomotor technologies. The rationale behind the use of GO and GQDs in several optical and electrochemical biosensing technologies as well as in building smart devices such as nano/micromotors will be explained. Taking advantage of graphene materials we are developing simple, sensitive, selective and rapid biosensing platforms and other devices with interest for various diagnostics applications. The various examples will include: a) use of graphene as novel platform in quantum dots – based microarray & laterals flow technologies taking advantages of high quenching efficiency of GO. A “turn ON by a pathogen” device will be shown as a highly sensitive detection system using plastics or paper/nanopaper substrates; b) design and application of GQDs–based sensors for contaminants detection based on the use of multifunctional composite materials that enable rapid, simple and sensitive platforms in connection to smartphone; c) A water activated graphene oxide transfer technology using wax printed membranes for fast patterning of a touch sensitive device with interest for electronic devices including sensing as well as for a cost-efficient nanomotor building technology for several applications.

Acknowledgements. We acknowledge support from EU (Graphene Flagship) and MINECO (Spain) MAT2017-87202-P. This work is also funded by the CERCA Programme / Generalitat de Catalunya. ICN2 is supported by the Severo Ochoa program from Spanish MINECO (Grant No. SEV-2013-0295).

References.
1) E. Morales-Narváez, A.Merkoçi, Advanced Materials, 2012, 24, 3298; 2) L. Baptista Pires, C. C. Mayorga-Martínez, M.Medina Sanchez, H.Monton, A.Merkoçi, ACS Nano 2016, 10, 853; 3) E. Morales-Narváez, L. Florio Sgobbi, S. Antonio Spinola Machado, A.Merkoçi, Progress in Materials Science, 2017, 86, 1.; 4. Álvarez-Diduk, J. Orozco, A. Merkoçi, Scientific Reports, 2017, 7, 976; 5.E. Morales-Narváez, L. Baptista-Pires, A. Zamora-Gálvez, A. Merkoçi, Advanced Materials, 2017, 29, 1604905; 6) L. Baptista-Pires, J. Orozco, P.Guardia, A.Merkoçi, Small, 2017, DOI: 10.1002/smll.201702746

关于主办方

联系我们
400-110-3655   

E-mail: meeting@c-gia.cn   meeting01@c-gia.cn

参展电话:13646399362(苏老师)

主讲申请:19991951101(王老师)

官方微信订阅号
Copyright © 中国国际石墨烯创新大会 版权所有     运营机构:北京现代华清材料科技发展有限责任公司
grapchina.org 京ICP备10026874号-12   grapchina.cn 京ICP备10026874号-23
京公网安备 11010802023402号
分享到: