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Back Cover Chromatographic Separation of Highly Soluble Diamond Nanoparticles Prepared by Polyglycerol Grafting (Angew. Chem. Int. Ed. 62011)

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Nanodiamond
that is highly soluble …
… in a physiological environment was fabricated through ring-opening multibranching
polymerization of glycidol at high temperature under neutral conditions. In their
Communication on page 1388 ff., N. Komatsu and co-workers describe the preparation
of the polyglycerol-functionalized nanodiamond, characterization by solid-phase NMR,
IR, and Raman spectroscopy and elemental analysis, and separation of the particles
according to their size by size-exclusion chromatography.
Back Cover
Li Zhao, Tatsuya Takimoto, Masaaki Ito, Naoko Kitagawa,
Takahide Kimura, and Naoki Komatsu*
Nanodiamond that is highly soluble in a physiological environment was fabricated
through ring-opening multibranching polymerization of glycidol at high temperature
under neutral conditions. In their Communication on page 1388 ff., N. Komatsu and
co-workers describe the preparation of the polyglycerol-functionalized nanodiamond,
characterization by solid-phase NMR, IR, and Raman spectroscopy and elemental
analysis, and separation of the particles according to their size by size-exclusion
chromatography.
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prepare, polyglycerol, 62011, int, diamond, cover, angel, separating, chem, chromatography, soluble, back, grafting, highly, nanoparticles
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