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Roadmap on carbon molecular nanostructures in space

  • Klavs Hansen
  • , D. A. García-Hernández
  • , E. E. B. Campbell
  • , Dogan Erbahar
  • , Alicja Domaracka
  • , Cornelia Jäger
  • , C. Ewels
  • , Polona Umek
  • , E. Peeters
  • , S. Kwok
  • , J. Cami
  • , Greg C. Sloan
  • , P. Ehrenfreund
  • , H. Linnartz
  • , A. Manchado
  • , Nick L. J. Cox
  • , J. Bernard-Salas
  • , E. K. Campbell
  • , A. Monreal-Ibero
  • , B. H. Foing
  • J. Smoker, M. Elyajouri, A. Ebenbichler, J. Th. van Loon, J. Bouwman, A. Farhang, F. Salama, C. Joblin, G. Mulas, U. Jacovella, M. A. Gómez-Muñoz, R. Barzaga, T. Huertas-Roldán, Hugh Mohan, Michał Bartkowski, Silvia Giordani, Gao-Lei Hou, J. J. Díaz-Luis, J. Alcolea, D. Tafoya, V. Bujarrabal, N. Došlić, T. Došlić, E. Catalano, M. Yesiltas, P. Ferrari, S. Brünken, G. Berden, J. M. Bakker, J. Oomens, B. Redlich, A. Pitanti, B. Bertoni, L. Vicarelli, P. Lamberti, M. Cojocari, G. Fedorov, Yu. Svirko, P. Kuzhir, M. Hochlaf, M. Mogren al Mogren, Alexey Potapov, Eftal Gezer, H. Zettergren, H. T. Schmidt, Mark H. Stockett, Eleanor K. Ashworth, James N. Bull, M. Fárník, T. Wakabayashi, L. Ganner, M. Kappe, E. Gruber, C. Pardanaud, J. Dezalay, J. A. Noble, K. Tőkési, X. H. Zhou, J. M. Gong, R. G. Zeng, Z. J. Ding, Clayton S.-C. Yang, Feng Jin, Sudhir Trivedi, Uwe Hommerich, Laszlo Nemes, Alan C. Samuels, G. Shmavonyan, L. Misakyan, A. Shmavonyan, I. Sciriha, S. Suriyaprasanth, Dhanoj Gupta, D. A. Kalchevski, D. Trifonov, S. Kolev, T. Milenov, Miguel A. Caro, Seyedabdolreza Sadjadi, Quentin Andrew Parker, A. Lombardi, Martin McCoustra, F. Koch, I. Schubert, C. Trautmann, M. E. Toimil-Molares, B. Kerkeni, D. Talbi, C. P. Hsu, G. Ouerfelli, H. H. Chuang, Ko-Ju Chuang, Yu-Jung Chen, E. Villaver, M. Manteiga

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Abstract

In this roadmap article, we consider the main challenges and recent breakthroughs in understanding the role of carbon molecular nanostructures in space and propose future avenues of research. The focus lies on small carbon-containing molecules up to fullerenes, extending to even larger, more complex organic species. The roadmap contains forty contributions from scientists with leading expertize in observational astronomy, laboratory astrophysics/chemistry, astrobiology, theoretical chemistry, synthetic chemistry, molecular reaction dynamics, material science, spectroscopy, graph theory, and data science. The concerted interdisciplinary combination of the state-of-the-art of these astronomical, laboratory, and theoretical studies opens up new ways to advance the fundamental understanding of the physics and chemistry of cosmic carbon molecular nanostructures and touches on their wider relevance and impact in nanotechnology and catalysis.
Original languageEnglish
Article number94
JournalEuropean Physical Journal D
Volume79
Issue number8
DOIs
Publication statusPublished - 4 Aug 2025

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