2017
DOI: 10.1039/c6ra26414j
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Preparation and characterization of a pH-responsive membrane carrier for meso-tetraphenylsulfonato porphyrin

Abstract: The pH-responsive PSF-g-P4VP-blended PSF membrane smartly rejects meso-tetraphenylsulfonato porphyrin (TPPS) and induces TPPS to form J-type aggregates.

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Cited by 19 publications
(15 citation statements)
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“…From Table 3, the content of N element both on the outside membrane surface or inside the membrane increases significantly from 0.96% and 0.89% (in the B2 base membrane) to 1.71% and 1.48% (in the B2 32:1 membrane), which is attributed to the formation of the porphyrin rings containing N element. In UV spectra ( Figure 3B), there is no absorption peak seen in the B2 base membrane, but the B2 32:1 membrane shows obvious characteristic absorption peaks of porphyrin, including S band (419 nm) and Q band (514 nm, 549 nm, 590 nm, 646 nm) [38]. These characterizations confirm the existence of…”
Section: Determination Of the Existence And Protonation Of Tcpp In Thsupporting
confidence: 53%
“…From Table 3, the content of N element both on the outside membrane surface or inside the membrane increases significantly from 0.96% and 0.89% (in the B2 base membrane) to 1.71% and 1.48% (in the B2 32:1 membrane), which is attributed to the formation of the porphyrin rings containing N element. In UV spectra ( Figure 3B), there is no absorption peak seen in the B2 base membrane, but the B2 32:1 membrane shows obvious characteristic absorption peaks of porphyrin, including S band (419 nm) and Q band (514 nm, 549 nm, 590 nm, 646 nm) [38]. These characterizations confirm the existence of…”
Section: Determination Of the Existence And Protonation Of Tcpp In Thsupporting
confidence: 53%
“…23 Chu et al prepared pH-responsive membranes by graing diblock polymers of poly(N-isopropylacrylamide)-bpoly(methacrylic acid) (PNIPAM-b-PMAA) onto nylon-6 membrane substance pore surfaces using atom transfer radical polymerization. 24 In our earlier studies, we developed pH-responsive membranes by graing poly(4-vinylpyridine) (P4VP) chains from the surface of commercial PSF membranes 28 and graing poly(2-(dimethylamino)ethylmethylacrylate) (PDMAEMA) chains from the surface of ethylene vinyl alcohol (EVAL) membranes. 29 The pH-responsive functions are achieved through the shrinking/swelling conformational transitions of the pH-responsive polymer chains.…”
Section: -3mentioning
confidence: 99%
“…P4VP is a pH-responsive polybase with a p K a value of ~4.5 (Wang et al, 2017), which is lower than those of PDEA and PDMA. Relationship between degree of protonation of the pyridine group (α) and pH can be expressed using Equation (1)…”
Section: Resultsmentioning
confidence: 99%
“…At pH around 5 or above, P4VP has either very low or zero charge density, which results in precipitation. P4VP-based polymers have been used for syntheses of polymeric micelles (Koh et al, 2007), microgels (Ma and Fukutomi, 1991; Kim and Vincent, 2005), nanocomposite particles (Fujii et al, 2005, 2006a), surface-modifier for immobilization of nanoparticles (Malynych et al, 2002) and polymer brushes (Wang et al, 2017). Here, P4VP homopolymer was used as a colloidal stabilizer to synthesize PS latex particles.…”
Section: Resultsmentioning
confidence: 99%
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