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A fellowship by the IQS (G.M.E.) is gratefully acknowledged. We would like to thank Generalitat de Catalunya for the Consolidated Research Group Grant 2017 SGR 01559 to GEMAT. Financial support from MINECO (RTI2018?094734?B?C22, CTQ2017?85393?P and PID2020?116490GB?I00) and ERA?NET/European Commission/MINECO (EuroNanoMed2017?191 / PCIN?2017?042) is acknowledged. IMDEA Nanociencia acknowledges support from the Severo Ochoa Programme for Centres of Excellence in R&D (MINECO, Grant SEV2016?0686). The authors thank Dra. Cristina Fornaguera for her assistance in confocal microscopy.
A. G.-R., L. M.-M., and F. G. acknowledge the European Commission under the Graphene Flagship, Contract No. CNECTICT-604391. L. C. and F. G. acknowledge funding from the European Union’s Seventh Framework Program (FP7/2007-2013) through the ERC Advanced Grant NOVGRAPHENE (Grant Award No. 290846), and L. C. acknowledges the Comunidad de Madrid through Grant No. MAD2D-CM, S2013/MIT-3007. L. M.-M. and F. J. G.-V. acknowledge financial support by the Spanish MINECO under Contract No. MAT2014-53432-C5.
A.A.-C. is funded by the predoctoral program of the Basque Government. We acknowledge financial support from the Spanish Ministry of Economy, Industry and Competitiveness grant BIO201677390-R to R. P.-J. and Marie Curie Career Integration Grants (CIG) FP7-PEOPLE-2013-CIG from the European Commission to R. P.-J. This work was also supported by the Spanish Ministry of Economy, Industry and Competitiveness under the Maria de Maeztu Units of Excellence Program-MDM-2016-0618.
A.C-G. acknowledges fellowship support from the Comunidad de Madrid (Spain). This work was supported by MICINN, Spain ( MAT2008-01735 ) and CONSOLIDER en Nanociencia molecular ( CSD-2007-00010 ).
A.C.-G. acknowledges fellowship support from the Comunidad de Madrid (Spain). This work was supported by MICINN (Spain) GR/MAT/0111/2004 , MAT2008-01735 and CONSOLIDER-INGENIO-2010 ‘Nanociencia Molecular’ CSD-2007-00010 .
A.D.-B. and B.L.R. contributed equally to this work. This work was funded by the European Union's Horizon 2020 research and innovation programme under grant agreement No. 737116 (ByAxon). The work was also partially funded by the Spanish Ministry of Science and Innovation through project BiSURE (Grant: DPI2017-90058-R) and the ‘Severo Ochoa’ Programme for Centers of Excellence in R&D (MINECO, Grant SEV-2016-0686), as well as by the Comunidad de Madrid project NanoMagCOST (CM S2018/NMT-4321). BLR acknowledges UCM for her predoctoral fellowship. Authors are thankful to Dr. Esperanza Salvador, Isidoro Poveda, Gabriel Carro, Enrique Rodríguez, Dr. Francisco Urbano, and Dr. Covadonga Agudo from the Servicio Interdepartamental de Investigación at the Universidad Autónoma de Madrid for respective assistance with SEM, FESEM, and TEM studies. Sylvia Gutiérrez from the Advanced Light Microscopy Service at the Centro Nacional de Biotecnología (CNB-CSIC) is acknowledged for her assistance with CLSM studies.
A.H. and D.M.G. thank the DFG (Sonderforschungsbereich 953: “Synthetic Carbon Allotropes”) for financial support. T.T. is grateful for the financial support of the MINECO, Spain (CTQ2017-85393-P) and the Comunidad de Madrid (FOTOCAR-BON, S2013/MIT-2841). IMDEA Nanociencia acknowledges support from the “Severo Ochoa” Programme for Centres of Excellence in R&D (MINECO, Grant SEV-2016-0686).
A.J.M.-M. and J.O.I. contributed equally to this work. A.C.-G. acknowledges financial support from the BBVA Foundation through the fellowship ?I Convocatoria de Ayudas Fundacion BBVA a Investigadores, Innovadores y Creadores Culturales? (?Semiconductores ultradelgados: hacia la optpelectronica flexible?), from the MINECO (Ram?n y Cajal 2014 program, RYC-2014-01406), from the MICINN (MAT2014-58399-JIN), and the European Commission under the Graphene Flagship, Contract No. CNECTICT-604391. A.J.M.-M., G.R.-B., and N.A. acknowledge the support of the MICCINN/MINECO (Spain) through the programs MAT2014-57915-R, BES-2012-057346, and FIS2011-23488 and Comunidad de Madrid (Spain) through the program S2013/MIT-3007 (MAD2D). J.M.C., J.R.A., E.F., F.L., C.S., and I.J.F. acknowledge financial support from MINECO-FEDER (MAT2015-65203-R) and Mexican National Council for Science and Technology (CONACIT) M?xico. J.O.I. and H.S.J.vd.Z. acknowledges the support of the Dutch organization for Fundamental Research on Matter (FOM) and by the Ministry of Education, Culture, and Science (OCW). W.S.P. acknowledges CAPES Foundation, Ministry of Education of Brazil, under Grant No. BEX 9476/13-0. W.S.P. and J.J.P. acknowledge Ministerio de Econom?a y Competitividad (Spain) for financial support under Grant No. FIS2013-47328-C02-1, the European Union structural funds and the Comunidad de Madrid MAD2D-CM program under Grant Nos. S2013/MIT-3007, the Generalitat Valenciana under Grant No. PROMETEO/2012/011. W.S.P. and J.J.P. also acknowledge the computer resources and assistance provided by the Centro de Computaci?n Cient?fica of the Universidad Aut?noma de Madrid and the RES.
A.K.I. acknowledges the Leverhulme Trust for Early Career Fellowship ECF-2020-638 and financial support from Tikrit University (Iraq), the Iraqi Ministry of Higher Education (SL- 20). A.K.I and C.J.L. acknowledge financial support from the UK EPSRC through grant nos. EP/M014452/1, EP/P027156/ 1, and EP/N03337X/1. This work was additionally supported by the European Commission through the FET Open project 767187-QuIET. This work was supported by Spanish MICINN (MAT2017-88693-R, CTQ2017-85393-P, CTQ2017-84727-P, and PID2020-116490GB-I00). Support from the UK EPSRC is acknowledged through grant nos. EP/ N017188/1, EP/M014452/1, EP/P027156/1, and EP/N03337X/1. IMDEA Nanociencia acknowledges support from the “Severo Ochoa” Programme for Centres of Excellence in R&D (MINECO, grant SEV2016-0686). The authors thank the Comunidad de Madrid Atracción de Talento grant 2019-T1/IND-16384 (EL) and NanoMagCOST (CM S2018/ NMT-4321). N.A. and G.R.B. acknowledge financial support from the Spanish Ministry of Science and Innovation through the “María de Maeztu” Programme for Units of Excellence in R&D (CEX2018-000805-M)
A.L.L. is grateful to ?La Caixa? Banking Foundation for his PhD fellowship. The authors are gratitude to the Spanish Government (MINECO Projects MAT2012-38429-C04-01, MAT2015-64139-C4-1, CTQ2014-58989-P and CTQ2015-71936-REDT) and the Generalitat Valencia (Project PROMETEOII/2014/047) for support. The Comunidad de Madrid (S2013/MIT-3029, Programme NANOAVANSENS) is also gratefully acknowledged.
A.Q. and C.GM. contributed equally to this work. The authors would like to thank financial support from the European Commission through the project NANOPYME FP7NMP2012SMALL6 NANOPYME (Grant No. 310516) and from the Spanish Ministerio de Econom?a y Competitividad through Project MAT201348009C41P. F.R.M. is also indebted to MINECO for a ?Juan de la Cierva? contract (ref: JCI201214521), which is cofinanced with European Social Found.
A.S. acknowledges the computing facilities provided by the CINECA Consortium, within the INF16_npqcd project, under the CINECA-INFN agreement. M.P. acknowledges financial support from the “Severo Ochoa” Programme for Centres of Excellence in R&D (MINECO, Grant No. SEV-2016-0686).
A.T acknowledges useful discussions with G. Chiarello, E.Colavita, V. Parente, T. Ritacco and F. von Oppen. This work has been partially supported by FIRB “HybridNanoDevRBFR1236VV”, MINECO (Spain),Grant FIS2011-23713, ERC Advanced Grant 290846, European Union Seventh Framework Programme under grant agreement no. 604391, Graphene Flagship, the Swedish Research Council, and by Polish National Centre of Science grant 2015/17/B/ST3/02391.
AC-G acknowledges funding from the European Commission under the Graphene Flagship, contract CNECTICT-604391. RF acknowledges support from the Netherlands Organization for Scientific Research (NWO) through the research program Rubicon with project number 680-50-1515. This project further received funding from the European Union’s Horizon 2020 research and innovation program under grant agreement No. 696656 (Graphene Flagship).
AC-G acknowledges funding from the European Commission under the Graphene Flagship, contract CNECTICT-??????? RF acknowledges support from tehrela Nndesth Organisation for Scientific Research (NWO) through the research program Rubicon with project number ???????????? DPdL acpkpnoorwt lferdogme st hseu MINECO (program FIS ???????????C ?? ??P).
Acknowledgement: The author thanks the Spanish Ministry of Economy and Competitiveness through MAT-2009-13488 and the Comunidad de Madrid through PHAMA_2.0 S2013/MIT-2740.
Acknowledgement: This work was partly supported by the European Research Council (ERC Advanced Grant #267867 Plasmaquo).
Acknowledgements M.G. and V.G. acknowledge support from NSERC Strategic Grant STPGP322206-05,Marie Curie Incoming InternationalFellowship,OECDCo-operative Research Programme: Biological resource management for Sustainable Agricultural Systems JA00053351, and Ontario Research Fund–Global Leadership in Genomics and Life Sciences GL2-01-035. The genome and transcriptome sequencing projects were funded by the Government of Canada through Genome Canada and the Ontario
Acknowledgements The financial support of projects: Retos Colaboración RTC-2015-4184-1 (cofinanced by the Ministry of Economy and Competitivity and FEDER Buna manera de hacer Europa^), CTQ2015-70023-R and CTQ2015-64402-C2-1-R (Spanish Ministry of Economy and Competitivity Research Projects) and S2013/ MT-3029 (NANOAVANSENS Program from the Comunidad de Madrid) are gratefully acknowledged. R.M. Torrente-Rodríguez acknowledges a predoctoral contract from the Spanish Ministry of Economy and Competitivity.
Acknowledgements The financial support of the CTQ2015-70023-R and CTQ2015-64402-C2-1-R (Spanish Ministerio de Economía y Competitividad Research Projects) and S2013/MT3029 (NANOAVANSENS Program from the Comunidad de Madrid) are gratefully acknowledged.
Showing results 1 to 20 of 67