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Search for "capsule" in Full Text gives 29 result(s) in Beilstein Journal of Organic Chemistry.

Miniemulsion polymerization as a versatile tool for the synthesis of functionalized polymers

  • Daniel Crespy and
  • Katharina Landfester

Beilstein J. Org. Chem. 2010, 6, 1132–1148, doi:10.3762/bjoc.6.130

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  • shell [120]. The commercially available surfactant polyisobutylene-succinimide pentamine was reacted with the diisocyanate monomer. The capsule shell wall was found to be less permeable than for capsules synthesized with a non-crosslinkable surfactant. Baier et al. used the previously described
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Published 01 Dec 2010

Molecular recognition of organic ammonium ions in solution using synthetic receptors

  • Andreas Späth and
  • Burkhard König

Beilstein J. Org. Chem. 2010, 6, No. 32, doi:10.3762/bjoc.6.32

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Published 06 Apr 2010

Control of stilbene conformation and fluorescence in self-assembled capsules

  • Mark R. Ams,
  • Dariush Ajami,
  • Stephen L. Craig,
  • Jye-Shane Yang and
  • Julius Rebek Jr

Beilstein J. Org. Chem. 2009, 5, No. 79, doi:10.3762/bjoc.5.79

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  • antibody interior [2][3][4], recent studies show that nearby tryptophans can transfer electrons to the stilbene excited state and an intense blue fluorescence develops. Inside the tight-fitting capsule 1.1 [5][6] (Figure 1) where it is surrounded by 16 aromatic panels, trans-stilbene’s fluorescence is
  • reduced to only 2% of what is observed in bulk solution. In contrast, normal fluorescence is observed in a loose-fitting capsule [7] although the photostationary trans-/cis-isomerization equilibria are altered in the limited space [8]. Isomerization of trans- to cis-stilbene is not possible in 1.1 but
  • little else is known about the photophysics of guests in this capsule. This research was undertaken to understand what controls the behavior of stilbenes in this and related constrained environments. Results and Discussion The space inside capsule 1.1 is defined by two pyramids comprising resorcinarenes
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Published 11 Dec 2009

Synthesis of deep- cavity fluorous calix[4]arenes as molecular recognition scaffolds

  • Maksim Osipov,
  • Qianli Chu,
  • Steven J. Geib,
  • Dennis P. Curran and
  • Stephen G. Weber

Beilstein J. Org. Chem. 2008, 4, No. 36, doi:10.3762/bjoc.4.36

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  • interactions that can occur in ion binding [8] and capsule formation [34]. Likewise, introduction of hydrogen bonding groups like those of 9 are crucial for achieving interactions with various substrates [35][36]. Coupling an aromatic ring onto the upper-rim of the fluorous calixarene led to an increase in
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Published 20 Oct 2008
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