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1 ing two A-type linkages (C4-->C8 and C7-O-C2 ether linkages).
2 e of the substituent or replacing it with an ether linkage.
3 t example representing the dominant beta-O-4 ether linkage.
4 cally challenging chiral tertiary alkyl-aryl ether linkage.
5 ompound containing a highly twisted diphenyl ether linkage.
6 ontains a stereogenic axis across the diaryl ether linkage.
7 stituted onto cyclooctatetraene (COT) via an ether linkage.
8 ent addition of palmitic acid through a thio-ether linkage.
9 nding polycarbonate with a minimal amount of ether linkages.
10 s decomposed at slower rates than those with ether linkages.
11 ch the amide functionalities are replaced by ether linkages.
12 the Ru(IV) allyl to generate trans-2-butenyl ether linkages.
14 lish the stereogenic centers adjacent to the ether linkage and a ring-closing metathesis reaction to
15 phospholipid vesicles containing sn-1 and -2 ether linkages and sphingomyelin at Ca2+ concentrations
16 he N-terminal nucleophile of ThnT through an ether linkage, and analysis suggests inactivation throug
18 alkylation to construct the tert-alkyl aryl ether linkage between the dopa and isoleucine residues.
19 reaction with them to produce monoalkylated (ether-linkaged) cyclodextrin derivatives are discussed a
20 the Z-val-cit-p-amidobenzyl alcohol through ether linkages, forming the peptide-drug derivatives 8 a
23 formation caused by unimolecular cleavage of ether linkages in homooxacalix[3]arene ligands during gr
24 th the discovery of monomer-invariant aryl-O-ether linkages in lignins that upon alkaline cleavage re
30 the archaeal structural features typified by ether linkage of the glycerol backbone to isoprenoid cha
32 pathway in order to cleave the racemic beta-ether linkages that are present in the backbone of the l
34 ng novel hybrid materials possess silyl aryl ether linkages to the silica surface that are thermally
35 eaction for formation of the required diaryl ether linkage was successfully tested on a model system.
36 roso acetal tosylate 17 containing the silyl ether linkage was thwarted by a slow alkylation and an u
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