Twofold fused concave hosts containing two phosphorus atoms: modules for the sandwich-type encapsulation of fullerenes in variable cavities

The design and synthesis of extended concave host P2 by fusion of two concave phosphorus-containing units is reported. Co-crystallization of P2 and the fullerene guests C60 and C70 afforded the 2 : 1 host–guest complexes (P2)2 ⊃ C60 and (P2)2 ⊃ C70, in which the two concave surfaces of P2 encapsulat...

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Published inChemical science Vol. 6; no. 11; pp. 6373 - 6378
Main Authors 山村 正樹, 鍋島 達弥, Yamamura Masaki, Hongo Daigo, Nabeshima Tatsuya
Format Journal Article
LanguageEnglish
Published England The Royal Society of Chemistry 01.11.2015
Royal Society of Chemistry
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Online AccessGet full text
ISSN2041-6520
2041-6539
2041-6539
DOI10.1039/c5sc02224j

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Abstract The design and synthesis of extended concave host P2 by fusion of two concave phosphorus-containing units is reported. Co-crystallization of P2 and the fullerene guests C60 and C70 afforded the 2 : 1 host–guest complexes (P2)2 ⊃ C60 and (P2)2 ⊃ C70, in which the two concave surfaces of P2 encapsulate the convex surface of the fullerenes in a sandwich fashion. Interestingly, the orientation of the two P2 molecules with respect to each other was observed to be flexible, resulting in the formation of a variety of cavity shapes. MALDI-TOF mass, NMR, and UV-vis absorption spectra supported the formation of host–guest complexes between P2 and the fullerenes in solution. The affinity of P2, containing two phosphorus atoms, towards fullerenes was significantly enhanced relative to P1 with one phosphorus atom.
AbstractList The design and synthesis of extended concave host by fusion of two concave phosphorus-containing units is reported. Co-crystallization of and the fullerene guests C and C afforded the 2 : 1 host-guest complexes ( ) ⊃ C and ( ) ⊃ C , in which the two concave surfaces of encapsulate the convex surface of the fullerenes in a sandwich fashion. Interestingly, the orientation of the two molecules with respect to each other was observed to be flexible, resulting in the formation of a variety of cavity shapes. MALDI-TOF mass, NMR, and UV-vis absorption spectra supported the formation of host-guest complexes between and the fullerenes in solution. The affinity of , containing two phosphorus atoms, towards fullerenes was significantly enhanced relative to with one phosphorus atom.
The design and synthesis of extended concave host P2 by fusion of two concave phosphorus-containing units is reported. Co-crystallization of P2 and the fullerene guests C sub(60) and C sub(70) afforded the 2 : 1 host-guest complexes (P2) sub(2) super( C) sub(6)0and (P2) sub(2) super( C) sub(7)0 in which the two concave surfaces of P2 encapsulate the convex surface of the fullerenes in a sandwich fashion. Interestingly, the orientation of the two P2 molecules with respect to each other was observed to be flexible, resulting in the formation of a variety of cavity shapes. MALDI-TOF mass, NMR, and UV-vis absorption spectra supported the formation of host-guest complexes between P2 and the fullerenes in solution. The affinity of P2, containing two phosphorus atoms, towards fullerenes was significantly enhanced relative to P1 with one phosphorus atom.
Concave host by fusion of two phosphorus atoms affords variable sandwich-type cavities for guest fullerene, C60 or C70. The design and synthesis of extended concave host P2 by fusion of two concave phosphorus-containing units is reported. Co-crystallization of P2 and the fullerene guests C60 and C70 afforded the 2 : 1 host–guest complexes (P2)2 ⊃ C60 and (P2)2 ⊃ C70, in which the two concave surfaces of P2 encapsulate the convex surface of the fullerenes in a sandwich fashion. Interestingly, the orientation of the two P2 molecules with respect to each other was observed to be flexible, resulting in the formation of a variety of cavity shapes. MALDI-TOF mass, NMR, and UV-vis absorption spectra supported the formation of host–guest complexes between P2 and the fullerenes in solution. The affinity of P2, containing two phosphorus atoms, towards fullerenes was significantly enhanced relative to P1 with one phosphorus atom.
The design and synthesis of extended concave host P2 by fusion of two concave phosphorus-containing units is reported. Co-crystallization of P2 and the fullerene guests C60 and C70 afforded the 2 : 1 host–guest complexes (P2)2 ⊃ C60 and (P2)2 ⊃ C70, in which the two concave surfaces of P2 encapsulate the convex surface of the fullerenes in a sandwich fashion. Interestingly, the orientation of the two P2 molecules with respect to each other was observed to be flexible, resulting in the formation of a variety of cavity shapes. MALDI-TOF mass, NMR, and UV-vis absorption spectra supported the formation of host–guest complexes between P2 and the fullerenes in solution. The affinity of P2, containing two phosphorus atoms, towards fullerenes was significantly enhanced relative to P1 with one phosphorus atom.
The design and synthesis of extended concave host P2 by fusion of two concave phosphorus-containing units is reported. Co-crystallization of P2 and the fullerene guests C 60 and C 70 afforded the 2 : 1 host–guest complexes ( P2 ) 2 ⊃ C 60 and ( P2 ) 2 ⊃ C 70 , in which the two concave surfaces of P2 encapsulate the convex surface of the fullerenes in a sandwich fashion. Interestingly, the orientation of the two P2 molecules with respect to each other was observed to be flexible, resulting in the formation of a variety of cavity shapes. MALDI-TOF mass, NMR, and UV-vis absorption spectra supported the formation of host–guest complexes between P2 and the fullerenes in solution. The affinity of P2 , containing two phosphorus atoms, towards fullerenes was significantly enhanced relative to P1 with one phosphorus atom.
The design and synthesis of extended concave host P2 by fusion of two concave phosphorus-containing units is reported. Co-crystallization of P2 and the fullerene guests C60 and C70 afforded the 2 : 1 host-guest complexes (P2)2 ⊃ C60 and (P2)2 ⊃ C70, in which the two concave surfaces of P2 encapsulate the convex surface of the fullerenes in a sandwich fashion. Interestingly, the orientation of the two P2 molecules with respect to each other was observed to be flexible, resulting in the formation of a variety of cavity shapes. MALDI-TOF mass, NMR, and UV-vis absorption spectra supported the formation of host-guest complexes between P2 and the fullerenes in solution. The affinity of P2, containing two phosphorus atoms, towards fullerenes was significantly enhanced relative to P1 with one phosphorus atom.The design and synthesis of extended concave host P2 by fusion of two concave phosphorus-containing units is reported. Co-crystallization of P2 and the fullerene guests C60 and C70 afforded the 2 : 1 host-guest complexes (P2)2 ⊃ C60 and (P2)2 ⊃ C70, in which the two concave surfaces of P2 encapsulate the convex surface of the fullerenes in a sandwich fashion. Interestingly, the orientation of the two P2 molecules with respect to each other was observed to be flexible, resulting in the formation of a variety of cavity shapes. MALDI-TOF mass, NMR, and UV-vis absorption spectra supported the formation of host-guest complexes between P2 and the fullerenes in solution. The affinity of P2, containing two phosphorus atoms, towards fullerenes was significantly enhanced relative to P1 with one phosphorus atom.
Author 山村 正樹
鍋島 達弥
Yamamura Masaki
Hongo Daigo
Nabeshima Tatsuya
AuthorAffiliation a Graduate School of Pure and Applied Sciences , Tsukuba Research Center for Interdisciplinary Materials Science , University of Tsukuba , 1-1-1 Tennodai , Tsukuba , Ibaraki , 305-8571 Japan . Email: myama@chem.tsukuba.ac.jp ; Email: nabesima@chem.tsukuba.ac.jp
AuthorAffiliation_xml – name: a Graduate School of Pure and Applied Sciences , Tsukuba Research Center for Interdisciplinary Materials Science , University of Tsukuba , 1-1-1 Tennodai , Tsukuba , Ibaraki , 305-8571 Japan . Email: myama@chem.tsukuba.ac.jp ; Email: nabesima@chem.tsukuba.ac.jp
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Snippet The design and synthesis of extended concave host P2 by fusion of two concave phosphorus-containing units is reported. Co-crystallization of P2 and the...
The design and synthesis of extended concave host P2 by fusion of two concave phosphorus-containing units is reported. Co-crystallization of P2 and the...
The design and synthesis of extended concave host by fusion of two concave phosphorus-containing units is reported. Co-crystallization of and the fullerene...
Concave host by fusion of two phosphorus atoms affords variable sandwich-type cavities for guest fullerene, C60 or C70. The design and synthesis of extended...
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SubjectTerms Affinity
Buckminsterfullerene
Chemistry
Encapsulation
Formations
Fullerenes
Holes
Phosphorus
Surface chemistry
Title Twofold fused concave hosts containing two phosphorus atoms: modules for the sandwich-type encapsulation of fullerenes in variable cavities
URI https://cir.nii.ac.jp/crid/1571980077548971648
https://www.ncbi.nlm.nih.gov/pubmed/30090256
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