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报告题目:
材料院《材料科学论坛》:Programmable bioelectronic devices and nanosystems
 报告人:
Prof. Ashutosh Tiwari
Secretary General, International Association of Advanced Materials
Director, Institute of Advanced Materials, Linkoping, Sweden
报告时间:
2017-10-25 14:00
报告地点:
清华大学材料学院学术报告厅(逸夫技术科学楼A205
主办单位:
材料院《材料科学论坛》 联系人:朱宏伟, 62797005
  简介:

 

Abstract:
Biodigital devices are emerged an interdisciplinary field of research in the biosensors and bioelectronics. Today, smart bio-interfaces are applying a renewed influence on bioelectronics beyond the incorporation of few or single atom(s)-thick two dimensional (2D) materials, which fuses the benefits of extraordinary stimuli-controlled interior and exterior catalytic atomic surfaces with those of super-thin digital biotechnology. The development of switchable and/or tunable interfaces of 2D materials endowed with desirable functionalities, and incorporation of these interfaces into on/off-switchable bio-devices. The aim of talk is to demonstrate various strategies of stimuli-enabled programming of enzymatic super-thin digital systems answer by a considerable control in their biochemical behavior with uni- and multi-model triggering of interfaces via temperature, pH, light, etc. These smart bioengineered atom-thick approaches are being formulated that sense specific biochemical changes and regulate in a liable manner, making them useful super-thin biotechnological tools. The progress in this field would make significant contributions to new age biodigital energy and medical technologies.

Short Bio:
Prof. Ashutosh Tiwari is Director at Institute of Advanced Materials, Sweden; Secretary General, International Association of Advanced Materials; Chairman and Managing Director of VBRI Sverige AB and AAA Innotech Pvt. Ltd; Editor-in-Chief, Advanced Materials Letters and Editorial Board Member, Nature Scientific Report; a materials chemist and Docent in the Applied Physics with the specialization of Biosensors and Bioelectronics from Link?ping University, Sweden. Prof. Tiwari has several national and international affiliations including in the United States of America, Europe, Japan, China and India. Just after completed his PhD, he joined as young scientist at National Physical Laboratory, India and later moved to University of Wisconsin, USA for postdoctoral research. He obtained various prestigious fellowships including Marie Curie, The European Commission; JSPS (regular and bridge fellow), Japan and SI, Sweden. His research focus is on the design and advanced applications of cutting edge stimuli-responsive materials for smart biodevices. He is actively involved in the undergraduate, post graduate and PhD teaching in the field of intelligent materials, nanomaterials and atom-thick materials for biomedical, biosensing and bioenergy devices. Prof. Tiwari is recipient of prestigious 'The Nano Award', 'Innovation in Materials Science Award' and 'Advanced Materials Medal' for his notable contributions to smart materials and biomedical nanotechnology. He has 500+ publications in the field of advanced materials and nanotechnology. He has edited/authored more than 100 books on advanced materials and technology for esteemed publishers. He is the series editor of the Advanced Materials series published by Scrivener Publishing and John Wiley & Sons; and Advanced Nanomaterials Series, Elsevier. He is a founder member & chair of Advanced Materials Congress Series, Global Graphene Forum; Baltic Conference Series on the New Age Technology and Innovations; NRI Technology Meet; International Conference on Material Science and Technology; Smart Materials and Surfaces; Nanomaterials and Nanotechnology; and World Technology Forum famous international events of materials science and technology and also bilateral events such as Sweden-Japan Nano, Indo-Swedish Advanced Materials Forum, etc. Prof. Tiwari serves as scientific evaluator, member of experts in several panels and committee to various governmental and non-governmental agencies; member of PhD committee, and have been invited for plenary, keynote and invited lectures in the over 50 countries. His current research on self-powered and zipper-like bioelectronics, nanobioreactors, programmable bioelectronics, on/off-switchable biodevices, triggered theranostics, affinity/MIP surfaces and smart nanosystems realized by the integration of smart architecting has emerged as a versatile platform for building a new age technological outlet to tackle key challenges in medical, energy supply and environmental issues.

 

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