| Literature DB >> 35251675 |
Anila Iqbal1, Ghazala Iqbal2, Muhammad Naveed Umar3, Haroon Ur Rashid4, Sher Wali Khan5.
Abstract
A series of novel spiropyrans were synthesized through the condensation of substituted 3,3-dimethyl-2-methyleneindoline with different nitro-substituted o-hydroxy aromatic aldehydes. Indoles were initially substituted with a variety of alkanes and esters moieties. The substituted 3,3-dimethyl-2-methyleneindoline was then reacted with nitro-substituted o-hydroxy aromatic aldehydes to yield the respective spiropyrans. The synthesized novel spiropyrans were encapsulated in silica nano-shells to protect them from the effect of moisture and pH. The thermochromic behaviour of novel spiropyrans was studied by UV-visible spectroscopy. The thermally induced isomerization of spiropyran derivatives was carried out in a water/ethanol mixture. The thermal isomerization of spiro-heterocyclic (colourless form) to merocyanine (MC) (coloured form) was a discontinuous process and was observed in a temperature range of 5-60°C via UV-visible spectrometer. The absorption process occurs reversibly regardless of the heating/cooling sequence. The spiropyran derivatives, therefore, have a potential application for colorimetric temperature indication.Entities:
Keywords: colorimetric; spiro-heterocycles; spiropyran; thermochromism
Year: 2022 PMID: 35251675 PMCID: PMC8889169 DOI: 10.1098/rsos.211385
Source DB: PubMed Journal: R Soc Open Sci ISSN: 2054-5703 Impact factor: 2.963
Figure 1Transformation of spiropyran.
Figure 2Synthetic scheme for the synthesis of spiropyrans and their encapsulation.
IUPAC names and chemical structures of the synthesized compounds.
| serial number | sample code | name | structure |
|---|---|---|---|
| 1 | SP-1 | 1′,3'-dihydro-3′,3'-dimethyl-1'-ethyl-7-nitro-spiro(2 | |
| 2 | SP-2 | 1′,3'-dihydro-3′,3'-dimethyl-1'-propyl-7-nitro-spiro(2 | |
| 3 | SP-3 | 1′,3'-dihydro-3′,3'-dimethyl-1'-butyl-7-nitro-spiro(2 | |
| 4 | SP-4 | 1′,3'-dihydro-1'-(1-methylpropyl)-3′,3'-dimethyl-7-nitro-spiro(2 | |
| 5 | SP-5 | 1′,3'-dihydro-1'-(1-methylacetate)-3′,3'-dimethyl-7-nitro-spiro(2 | |
| 6 | SP-6 | 1′,3'-dihydro-1'-(1-ethylacetate)-3′,3'-dimethyl-7-nitro-spiro(2 | |
| 7 | SP-7 | 1′,3'-dihydro-3′,3'-dimethyl-1'-ethyl-6-nitro-spiro(2 | |
| 8 | SP-8 | 1′,3'-dihydro-3′,3'-dimethyl-1'-propyl-6-nitro-spiro(2 | |
| 9 | SP-9 | 1′,3'-dihydro-3′,3'-dimethyl-1'-butyl-6-nitro-spiro(2 | |
| 10 | SP-10 | 1′,3'-dihydro-1'-(1-methylpropyl)-3′,3'-dimethyl-6-nitro-spiro(2 | |
| 11 | SP-11 | 1′,3'-dihydro-1'-(1-methylacetate)-3′,3'-dimethyl-6-nitro-spiro(2 | |
| 12 | SP-12 | 1′,3'-dihydro-1'-(1-ethylacetate)-3′,3'-dimethyl-6-nitro-spiro(2 |
Figure 3XRD patterns of hollow silica mesospheres and dye encapsulated mesospheres.
Figure 4SEM images of various encapsulated spiropyrans mesospheres. (a) SEM of SP-3E at a magnification of 30 000. (b) SEM of SP-3E at a magnification of 15 000. (c) SEM of SP-8E at a magnification of 30 000. (d) SEM of SP-8E at a magnification of 15 000. (e) SEM of SP-12E at a magnification of 30 000. (f) SEM of SP-12E at a magnification of 15 000.
Figure 5Temperature-dependent change in absorption spectra of SP-8 (e50 μM) measured in water-MeOH (1 : 1 v/v).
Temperature-dependent transformation of target compounds (SP1–SP12).
| sample code | thermochromic transformation |
|---|---|
| SP1 | |
| SP2 | |
| SP3 | |
| SP4 | |
| SP5 | |
| SP6 | |
| SP7 | |
| SP8 | |
| SP9 | |
| SP10 | |
| SP11 | |
| SP12 |