| Literature DB >> 32610553 |
Jaehyeon Park1, Ka Young Kim1, Seok Gyu Kang1, Shim Sung Lee1, Ji Ha Lee2, Jong Hwa Jung1.
Abstract
Metal-coordinationEntities:
Keywords: bispicolylamine; complexes; gels; supramolecular gels; zinc
Year: 2020 PMID: 32610553 PMCID: PMC7369882 DOI: 10.3390/ijms21134617
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Figure 1(A) Chemical structure of gelator 1. Proposed structure of (B) free ligand, (C) [1+Zn2++ACN]2+, and (D) [1+Zn2+OTf-]+; A type without Zn2+, B type at 0.1–0.4 equiv. of Zn2+, B and C types at 0.5–0.7 equiv. of Zn2+ and C type at above 0.8–1.0 equiv. of Zn2+ (E) The illustration of the expected structure conformation at different amount of Zn2+.
Figure 2(A) Photographs of the gels prepared from gelator 1 (a) 2 mg, (b) 4 mg (c) 6 mg (d) 8 mg in ACN (0.2 mL). (B) 8 mg of gelator 1 and (a) 0.1 equiv., (b) 0.3 equiv., (c) 0.5 equiv., (d) 0.7 equiv., (e) 0.9 equiv. of Zn2+ in ACN (0.2 mL).
Figure 3(A) Electrospray ionization (ESI)-mass spectra of 1 (0.1 mM) in the various equiv. of Zn2+ in ACN. Experimental and calculated data of (B) [1+Zn+ACN]2+ and (C) [1+Zn+OTf]+.
Figure 4(A) Temperature-dependent 1H NMR spectra of 1 (2 mM) in ACN-d3. (B) Plot for chemical shift of H1, H2 and H3 without (upper) and with (below) Zn2+ (0.5 equiv.) from 25 to 70 °C.
Figure 5SEM images of xerogels of 1 (A) without and (B) with Zn2+ in ACN.