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Nature Communications

  1. Goesten, MG, Evidence for a chemical clock in oscillatory formation of UiO-66, NATURE COMMUNICATIONS, 7, 2752, (2016)
  2. Kamps, JJAG, Chemical basis for the recognition of trimethyllysine by epigeneticg reader proteins, NATURE COMMUNICATIONS, 6, 1, (2015)
  3. Li, B, Ambipolar zinc-polyiodide electrolyte for a high-energy density aqueousg redox flow battery, NATURE COMMUNICATIONS, 6, 550, (2015)
  4. M. Mulet-Gas, L. Abella, P. W. Dunk, A. Rodriguez-Fortea, H. W. Kroto, and J. P. Poblet, Small endohedral metallofullerenes: exploration of the structure and growth mechanism in the Ti@C2n (2n = 26–50) family, Chem. Sci., 6, 675-686 (2015)
  5. J. Dommerholt, O, van Rooijen, Annika Borrmann, C. Fonseca Guerra, F. M.Bickelhaupt and F. L. van Delft, Highly accelerated inverse electron-demand cycloaddition of electron-deficient azides with aliphatic cyclooctynes, Nature Comm. 5, 5378 (2014)
  6. Dunk, Paul W., Bottom-up formation of endohedral mono-metallofullerenes is directed by charge transfer, NATURE COMMUNICATIONS, 5, 2350, (2014)
  7. Dommerholt, Jan, Highly accelerated inverse electron-demand cycloaddition of electron-deficient azides with aliphatic cyclooctynes, NATURE COMMUNICATIONS, 5, 80, (2014)
  8. Duan, Haohong, Ultrathin rhodium nanosheets, NATURE COMMUNICATIONS, 5, 9556, (2014)
  9. Patel, Dipti, Reductive assembly of cyclobutadienyl and diphosphacyclobutadienyl rings at uranium, NATURE COMMUNICATIONS, 4, 455, (2013)
adf/naturecommunications.txt · 最后更改: 2021/07/27 13:27 由 liu.jun

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