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1 esis of lasalocid A, an ionophore antibiotic polyether.
2 complete removal of external K by 18-Crown-6 polyether.
3 ecognition sites being part of a macrocyclic polyether.
4 ibitor, and the programmable construction of polyethers.
5 d Lewis acids as catalysts to produce cyclic polyethers.
6 branched, hyperbranched, and dendrimer like polyethers.
7 ohexanediamine (TMCDA), and 2,2'-bipyridine; polyethers 12-crown-4, 15-crown-5, 18-crown-6, and digly
9 ment, we have tested tyloxapol, an alkylaryl polyether alcohol polymer detergent previously used as a
11 arboxylic acid [(S)-4'-(HO)-DADFT-PE, 11], a polyether analogue, along with its ethyl and isopropyl e
15 d for molecular weight (MW) determination of polyether and polyester polyurethane (PUR) soft blocks.
18 ngs in the case of both the free macrocyclic polyether and the [2]catenane have led to a deeper funda
19 r electrolyte composed of strongly solvating polyether and weakly solvating fluorohydrocarbon pendant
20 packed Ni-zeolite to produce 20 macrocyclic polyethers and 11 examples of broad macrolactones with w
22 until his retirement to synthesis of cyclic polyethers and evaluation of their metal ion complexatio
24 an electrocatalytic oxidative degradation of polyethers and poly(vinyl ethers) via electrochemically
25 alysis, revealing that substructure R-O-R in polyethers and polysaccharides positively influenced bio
27 the macroporogen and a variety of aliphatic polyethers and triblock copolymeric surfactants as porog
28 to O-containing aromatic compounds, complex polyether- and ester-containing alkyl molecules of prebi
32 ases responsible for the biosynthesis of the polyether antibiotics nanchangmycin (1) and salinomycin
33 find that it acts by a mechanism similar to polyether antibiotics, which are structurally highly div
38 ioxynaphthalene (DNP)-containing macrocyclic polyethers as pi-electron donor rings have been synthesi
39 ncorporating 34- and 36-membered macrocyclic polyethers as recognition modules in the construction of
41 ne droplets in Fomblin Y 06/6 perfluorinated polyether at capillary numbers up to 0.81 and with a dro
42 a polymeric hydrocarbon and a perfluorinated polyether) at a common junction leads to molecular frust
45 g homopolymers based on a highly hydrophilic polyether backbone-the first of its kind-through a one-s
46 s to synthesize amorphous silicon-containing polyether-based electrolytes with varying substituent bu
49 trol mechanism and electronics, and flexible polyether block amide-coated silicone sheath housing the
50 egy to provide well-defined polyacrylamido-b-polyether block copolymers by a one-pot combination of p
53 ue of the polymer products-polycarbonates or polyether carbonates-it could provide an economic stimul
54 oxylic acids (PFECAs) and a chloro-perfluoro-polyether carboxylic acid (ClPFPECA) [k(SO4)(*-) = (0.85
55 which are separated from each other along a polyether chain carrying 2,6-diisopropylphenyl stoppers
57 two chelating IL systems (one with a pendent polyether chain with three ether oxygens, MPEG3PyrTFSI,
58 oxypyridine unit attached to either end of a polyether chain, mixed with a transition metal ion (e.g.
59 yridyl complexes of Co decorated with 350-Da polyether chains (Co(350)(2+)) form molten phases of nuc
64 rrence of a trifurcated hydrogen bond at the polyether compartment of the macrobicycle, account for t
67 ations by macrocyclic and diazamacrobicyclic polyethers, composed of ordered arrays of hard oxygen (a
68 Veterinary ionophore antibiotics (IPAs) are polyether compounds used extensively in the livestock in
70 rganoplatinum square and a {2+2} macrocyclic polyether containing two 1,5-dioxynaphthalene (DNP) and
72 opper(I) catalysts having multiple sites for polyether coordination, intramolecular oxonium ylide for
73 redox flow battery tests at neutral pH, the polyethers cycle well with no observable interference fr
74 bed that contain duplex DNA as the anion and polyether-decorated transition metal complexes based on
75 cules were linked to the core of a family of polyether dendrimers, which caused the hexamer to be for
76 Some of the SAMs prepared with new acyclic polyether derivatives are able to detect potassium catio
78 ocrystallisation of regio- and stereoregular polyethers derived from d- and l-xylose, leading to enha
80 oly(2-butenediol), an unsaturated telechelic polyether diol with molecular weights between 400 and 46
82 ectional approach and finally coupled to the polyether domain by an allyl/alkenyl Stille reaction und
85 nomycin biosynthetic pathway resembles other polyether epoxide hydrolases/cyclases of the MonB family
86 )-poly(butylene terephthalate) (PEOT/PBT), a polyether-ester multiblock copolymer to direct different
87 bridizing 3D-printed carbon fiber-reinforced polyether ether ketone (CF-PEEK) with perforated aluminu
88 implant material included titanium (n = 12), polyether ether ketone (PEEK) (n = 3), porous polyethyle
92 e consisting of lithium-exchanged sulfonated polyether ether ketone embedded with polyhedral oligosil
93 ination of the metal content in a sulfonated polyether ether ketone in the form of an indium(III) sal
94 fabricated from high-grade plastics such as polyether ether ketone or lower-grade plastics like poly
97 zyme intermediates, whereas tandem cyclic PK polyether formation of furans and pyrans can be initiate
98 y nucleophilic attack, and in the subsequent polyether formation process, it promotes the reaction of
100 introduction of either a hydroxyl group or a polyether fragment onto the aromatic ring resulted in or
101 ed coordination and interlocking of diolefin polyether fragments around the cyclic polymer backbone u
103 ature trans-anti-trans 7,7,6-fused tricyclic polyether framework was constructed in a single bromoniu
106 lubricated with Fomblin RT15 perfluorinated polyether grease in order to ensure compatibility with t
107 t the first total synthesis of marine ladder polyether gymnocin B (1) based on a two-phase strategy.
111 in (DMDFT, 1) hydroxamates and a bis-salicyl polyether hydroxamate are evaluated for their iron-clear
115 table [2]catenane, composed of a macrocyclic polyether incorporating 1,5-dioxynaphthalene (DNP) and t
116 rupting compounds and identified Monensin, a polyether ionophore antibiotic, as a potent migration su
117 he determination of six antibiotics from the polyether ionophore class (lasalocid, maduramicin, monen
118 e biosynthetic gene cluster (97 kbp) for the polyether ionophore monensin from Streptomyces cinnamone
123 These data identify salinomycin and other polyether ionophores as novel potential antiscarring the
124 ion reactions in macrotetrolides, a class of polyether ionophores produced by Streptomyces species, w
127 The [2]catenane in which the macrocyclic polyether is mechanically interlocked with the cyclobis(
128 helatase antibody 7G12 was found to bind the polyether jeffamine in addition to its cognate hapten N-
129 Evidence that the natural substrate for the polyether KR(0) domains is, as predicted, a (2R)-2-methy
130 ble seven-membered rings embodied in a large polyether ladder-like scaffold structure, and (iii) dete
132 ns are complexed by either cyclic or acyclic polyether ligands and which have well-characterized sing
134 g components, and macrocyclic isophthalamide polyether ligands have been prepared using a general ani
135 ble aspects of the chemistry of complexes of polyether ligands including crown ethers, cryptands, gly
136 ers, cryptands, glycols, glymes, and related polyether ligands with heavier group 13 and 14 elements
138 initrobenzene in the presence of macrocyclic polyether ligands: L(C) (cryptand) and L(E) (crown-ether
139 mbered macrocyclic nucleoside analogues with polyether linkages, including C2-symmetric molecules, ha
141 as a flexible linker to produce macrocyclic polyether-linked malonates 5, 6, 8, and 9 under solid-li
144 etates for the construction in high yield of polyether macrocycles having ring sizes greater than 25
145 capable of forming one-to-one complexes with polyether macrocycles that consist of two pi-electron-ri
147 ly, multiple additions to C60 of macrocyclic polyether malonate 5 gave C60 bis-adduct 10 selectively,
148 Structural characterization of the "ladder" polyether marine natural products raised a puzzle that p
149 y metabolite to be discovered as of yet, the polyether marine neurotoxin maitotoxin constitutes a maj
150 gurational assignment of this largest of the polyether marine toxin include (i) introduction of p-(me
151 o the highly viscous, semisolid hybrid redox polyether melt, [Co(phenanthroline)(3)](MePEG-SO(3))(2),
154 des offer the potential to construct complex polyether natural products expeditiously and in a manner
156 plications in the biosynthesis of the ladder polyether natural products, such as the brevetoxins and
158 (PbTx-1 to PbTx-10) are potent lipid soluble polyether neurotoxins produced by the marine dinoflagell
159 (PbTx-1 to PbTx-10) are potent lipid-soluble polyether neurotoxins produced by the marine dinoflagell
160 istable [2]catenanes composed of macrocyclic polyethers of different sizes incorporating both electro
161 thetic platform allows libraries of discrete polyether oligomers to be prepared and the impact of var
162 luoroalkyl sulfonic acids (C4-C8), mono- and polyether perfluoroalkyl ether acids, and polyfluoroalky
163 depolymerize an environmentally recalcitrant polyether, poly(ethylene oxide) (PEO), that cannot penet
164 polymers, including aliphatic polyesters and polyethers, poly(alpha-peptoid)s, poly(meth)acrylates, p
166 me, a new class of multifunctional dendritic polyether polyketals containing different ketal linkages
175 ctivities of five caged crown ethers and two polyether reference compounds in methanol solution.
176 +) rings encircling dumbbells or macrocyclic polyethers, respectively, that contain a BIPY(2+) unit w
177 of diiminoisoindoline with amine-terminated polyethers results in the formation of phthalocrown macr
178 le in that it consists of two separate fused polyether ring assemblies linked by a methylene group.
179 c N-(X)sulfonyl carbamoyl lariat ethers with polyether ring sizes of 12-crown-4, 14-crown-4, 15-crown
180 roup of natural neurotoxins characterized by polyether ring systems that are found in the blooms of r
182 Our recent work with cyclic and acyclic polyether self-assembled monolayers (SAMs) on gold is pr
183 unterion relaxation is in turn controlled by polyether "solvent" fluctuations, this is a new form of
185 ly resolves a single enantiomeric, isotactic polyether stereoisomer ([mm](P)>=78 %), the isoselective
186 analyses of brevetoxins have shown that the polyether structure invariably has a very high affinity
187 brevis metabolites, though the "interrupted" polyether structure of brevisin is novel and provides fu
189 PQT2+ inside a framework (MOF-177) devoid of polyether struts showed negligible uptake of PQT2+, indi
190 rticles (EUOL@AgNPs) incorporated sulfonated polyether sulfone (SPES)/polyethersulfone (PES) electros
192 ses, the epimerase-active KR(0) domains from polyether synthases lack one or both residues of the con
194 PEG-SO(3))(2), where MePEG-SO(3) is a MW 350 polyether-tailed sulfonate anion, remarkably accelerates
195 ,5-dihydrofuran) (PDHF), from an unsaturated polyether that contains cyclobutane-fused THF in each re
196 e strategies afford a family of carbohydrate polyethers, the physical and chemical properties of whic
197 of CO(2) incorporation within polyesters and polyethers, thereby allowing access to new polymer chemi
198 lic acid [(S)-4'-(HO)-DADFT, 1] revealed the polyether to be more tolerable, achieving higher concent
199 as paralytic shellfish poisoning toxins and polyether toxins are also discussed, and genetic aspects
201 erved on fish are thought to be due to algal polyether toxins, known as the prymnesins, but their lac
204 long an isotactic hydroxyl-group-derivatized polyether track by the formation/breakage of ester linka
209 owing toolbox for epoxide polymerization, a "polyether universe" may be envisaged that in its structu
210 d functional diversity into sequence-defined polyethers, unlocking their potential for real-life appl
211 antitative analysis of a matrix, hydrophilic polyether urethane (HPEU) intravaginal ring (IVR) for su
212 Although 3 was superior to its isomers, this polyether was overshadowed by 15 to an extent in excess
213 th selected proton-based systems: 18-crown-6 polyether with protonated peptides and base-pairing ener
214 lied to the construction of sequence-defined polyethers, with side-arms at precisely defined location