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1 the aqueous behavior of the large, nonpolar cryptophane.
2 ed in aqueous solution using two enantiopure cryptophanes.
5 give, in 89% yield, the first water-soluble cryptophane-111 derivative, namely [(Cp*Ru)(6)1]Cl(6) ([
6 ion at pH 5.5 generated a 13.4 ppm downfield cryptophane-(129)Xe NMR chemical shift relative to pH 7.
10 ional affinity to tris-(triazole ethylamine) cryptophane, a previously unsynthesized water-soluble or
11 spite the large structural similarities with cryptophane-A (1) and -B (2), these two new compounds sh
14 e structural analogues of the two well-known cryptophane-A (1; chiral) and cryptophane-B (2; achiral)
17 deeper insight into the binding behavior of Cryptophane-A and enables quantification of its relative
18 e report high-resolution X-ray structures of cryptophane-A and trifunctionalized derivatives in crown
20 m at the same strategic position within an L cryptophane-A cage, under the influence of chiral potent
24 ly synthesized tris(triazole propionic acid) cryptophane-A derivative (TTPC) showed how solvation of
25 Of note are trifunctionalized, water-soluble cryptophane-A derivatives, which exhibit exceptional aff
26 provide direct and unambiguous evidence that Cryptophane-A exhibits measurable affinity for three maj
29 according to the amount of CH4 bound to the cryptophane-A in the film and is determined using surfac
31 xide shows a 1.5-times stronger affinity for Cryptophane-A than methane, while nitrogen relative affi
34 spin-hyperpolarized xenon ((129)Xe) atoms in cryptophane-A-monoacid (CrAma) and their indirect detect
38 gh (100 muM) AFCA concentration, where small cryptophane aggregates were observed, and was only detec
39 igh (100 uM) AFCA concentration, where small cryptophane aggregates were observed, and was only detec
41 ical resolution of C(3)-symmetrical tris-aza-cryptophanes anti-3 and syn-4, as well as the study of t
42 two well-known cryptophane-A (1; chiral) and cryptophane-B (2; achiral) diastereomers since these new
45 of nitrogen atoms grafted directly onto the cryptophane backbone has a strong impact on the in-out e
46 the introduction of nitrogen atoms into the cryptophane backbone has an effect on the binding proper
50 egation phenomenon, highlight limitations of cryptophane-based Xe sensing, and offer insights into th
52 rivatives can be used to design new anti/syn cryptophanes bearing suitable ligands in order to consti
54 rms binding measurements indicating that the cryptophane cage does not strongly interact with the sur
59 tion of the physical properties of the xenon@cryptophane complexes, only based on structural paramete
61 This result contrasts with the case of other cryptophanes decorated solely with methoxy substituents.
62 We report the synthesis of C(3)-symmetric cryptophanes decorated with three aromatic amine groups
63 his article the synthesis of an asymmetrical cryptophane derivative (possessing only C(3)-symmetry) b
65 se compounds represent the first examples of cryptophane derivatives bearing more than six substituen
71 The 1.70 A resolution crystal structure of a cryptophane-derivatized benezenesulfonamide complexed wi
73 ne-A for methane was first reported in 1993, cryptophane-doped polymer films have been extensively st
77 r, the synthesis of these highly substituted cryptophanes gives rise to the two anti- and syn-diaster
78 nocyclohexane (R)-5, which leads to a chiral cryptophane (>90% yield) that is built-up from two (P)-2
79 equent reactions allowed the design of a new cryptophane host able to bind zinc or nickel cations.
80 which is the highest reported affinity for a cryptophane host in phosphate-buffered saline (pH 7.2).
81 which is the highest reported affinity for a cryptophane host in phosphate-buffered saline (pH 7.2).
84 We report the synthesis of new water-soluble cryptophane host molecules that can be used for the prep
85 lta = 67.6 ppm at pH 5.5, where Trp(peptide)-cryptophane interactions were evidenced by Trp fluoresce
87 consider multiple Xe exchange processes for cryptophane-mediated bulk (129)Xe depolarization, which
88 t room temperature, debunking old beliefs of cryptophane-methane selectivity and reformulating the ro
90 n was determined radiometrically to give the cryptophane-radon association constant K(a)=49,000 +/- 1
94 artitioning of radon between air and aqueous cryptophane solutions of varying concentration was deter
97 the efficient large-scale production of new cryptophanes that can be used as chemical platforms read
98 his article, we present the synthesis of new cryptophane-type hosts capable of binding xenon in aqueo
100 The preparation of these highly substituted cryptophanes was achieved due to the synthesis of a new
101 behavior, we designed a novel water-soluble cryptophane with a pendant hydrophobic adamantyl moiety,
102 behavior, we designed a novel water-soluble cryptophane with a pendant hydrophobic adamantyl moiety,