excitation energy from the stopcocks to acceptors located inside of the nanochannel
[86]. The reason why the succinimidyl ester was so successful in stabilizing these
composites was not well understood at the time of discovery. It is, however,
analogous to the stabilization mechanism of fluorenone explained in Fig. 4, namely,
via the interaction of the carbonyl group with the ZL extra framework potassium
cations [56].
Table 4 Stopcocks
18
G. Calzaferri
[86]. The reason why the succinimidyl ester was so successful in stabilizing these
composites was not well understood at the time of discovery. It is, however,
analogous to the stabilization mechanism of fluorenone explained in Fig. 4, namely,
via the interaction of the carbonyl group with the ZL extra framework potassium
cations [56].
Table 4 Stopcocks
18
G. Calzaferri
