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5篇 您的检索式:作者名="P.Rodrigues"
    题名 作者 年代 出处 被引量
1Graphene electronic fibres with touch-sensing and lightemitting functionalities for smart textiles显示文摘The true integration of electronics into textiles requires the fabrication of devices directly on the fibre itself using high-performance materials that allow seamless incorporation into fabrics.Woven electronics and opto-electronics,attained by intertwined fibres with complementary functions are the emerging and most ambitious technological and scientific frontier.Here we demonstrate graphene-enabled functional devices directly fabricated on textile fibres and attained by weaving graphene electronic fibres in a fabric.Capacitive touch-sensors and light-emitting devices were produced using a roll-to-roll-compatible patterning technique,opening new avenues for woven textile electronics.Finally,the demonstration of fabric-enabled pixels for displays and position sensitive functions is a gateway for novel electronic skin,wearable electronic and smart textile applications.Elias Torres Alonso Daniela P.Rodrigues Mukond Khetani Dong-Wook Shin Adolfo De Sanctis Hugo Joulie Isabel de Schrijver Anna Baldycheva Helena Alves Ana I.S.Neves Saverio Russo Monica F.Craciun 2018npj Flexible Electronics2018,2,1:2
2Artificial Accelerated Ageing of GFRP Pultruded Profiles Made of Polyester and Vinylester Resins: Characterisation of Physical–Chemical and Mechanical Damage显示文摘S.Cabral‐Fonseca J. R.Correia M. P.Rodrigues F. A.Branco 2012Strain2012,,2:1
3MicroRNA‐143 reduces viability and increases sensitivity to 5‐fluorouracil in HCT116 human colorectal cancer cells显示文摘Pedro M.Borralho Betsy T.Kren Rui E.Castro Isabel B.Moreira da Silva Clifford J.Steer Cecília M. P.Rodrigues 2009FEBS Journal2009,,22:1
4NF‐κB and apoptosis in colorectal tumourigenesis显示文摘M. M.Aranha P. M.Borralho P.Ravasco I. B.Moreira da Silva L.Correia A.Fernandes M. E.Camilo C. M. P.Rodrigues 2007European Journal of Clinical Investigation2007,,5:1
5The CASTOR-K Code,Recent Developments and Applications显示文摘The CASTOR-K code is a hybrid magnetohydrodynamic(MHD)-drift kinetic code developed for the study of MHD modes in the presence of energetic ion populations.It allows a fast assessment of the linear stability of the modes,as well as an accurate calculation of damping due to thermal species(Landau damping).These capabilities make the code an invaluable tool for parametric studies and data analysis.In recent years,CASTOR-K has been mostly used to analyze JET data,including the identification of mechanisms involved in the expulsion of energetic ions from the plasma.However,in order to prepare the code to be used for a wider range of tokamaks including ITER,the code is being subject to a series of important improvements.These improvements aim not only to introduce new physics in the code but also to make it capable of exchanging data with other codes through its integration in modelling infrastructures.In this paper a description of the CASTOR-K code is presented,as well as a summary of the most important results obtained with this code and a description of the new improvements being implemented.F.NABAIS D.BORBA R.COELHO A.FIGUEIREDO J.FERREIRA N.LOUREIRO P.RODRIGUES 2015Plasma Science and Technology2015,17,2:0
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