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Updated: Jun 14, 2026

Solid-phase Submonomer Synthesis of Peptoid Polymers and their Self-Assembly into Highly-Ordered Nanosheets
Published on: November 2, 2011
Solid-state structures of peapod bearings composed of finite single-wall carbon nanotube and fullerene molecules
Sota Sato1, Takashi Yamasaki2, Hiroyuki Isobe3
1Japan Science and Technology Agency, Exploratory Research for Advanced Technology, Isobe Degenerate π-Integration Project andAdvanced Institute for Materials Research, Aoba-ku, Sendai 980-8577, Japan; andDepartment of Chemistry, Tohoku University, Aoba-ku, Sendai 980-8578, Japan.
Abstract:
A supramolecular combination of carbon nanotube and fullerene, so-called a peapod, has attracted much interest, not solely because of its physical properties but also for its unique assembled structures of carbonaceous entities. However, the detailed structural information available was not sufficient for in-depth understanding of its structural chemistry or for exploratory research inspired by novel physical phenomena, mainly because of the severely inhomogeneous nature of currently available carbon nanotubes. We herein report solid-state structures of a molecular peapod. This structure, solved with a belt-persistent finite carbon nanotube molecule at the atomic level by synchrotron X-ray diffraction, revealed the presence of a smooth, inflection-free Hirshfeld surface inside the tube, and the smoothness permitted dynamic motion of the C60 guest molecule even in the solid state. This precise structural information may inspire the molecular design of carbonaceous machines assembled purely through van der Waals contacts between two neutral molecules.

