2018
DOI: 10.1016/j.cis.2018.02.001
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Structures and properties of porphyrin-based film materials part I. The films obtained via vapor-assisted methods

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Cited by 22 publications
(12 citation statements)
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“…A significant place among CPLs is occupied by Pp-based film materials. [160] Depending on the nature of the substituents on the periphery of the Pp-ring, the reduction of substituted tetraphenyl-Pp in the region of negative potentials or the oxidation of Pp occurs in the region of positive potentials. [161] In the first case, the process leads to a π-anion radical and a dianion, and in the second case, a π-cation-radical and a dication are formed.…”
Section: Production Of Polymeric Films By Polymerization Of Chelatingmentioning
confidence: 99%
See 1 more Smart Citation
“…A significant place among CPLs is occupied by Pp-based film materials. [160] Depending on the nature of the substituents on the periphery of the Pp-ring, the reduction of substituted tetraphenyl-Pp in the region of negative potentials or the oxidation of Pp occurs in the region of positive potentials. [161] In the first case, the process leads to a π-anion radical and a dianion, and in the second case, a π-cation-radical and a dication are formed.…”
Section: Production Of Polymeric Films By Polymerization Of Chelatingmentioning
confidence: 99%
“…A significant place among CPLs is occupied by Pp‐based film materials . Depending on the nature of the substituents on the periphery of the Pp‐ring, the reduction of substituted tetraphenyl‐Pp in the region of negative potentials or the oxidation of Pp occurs in the region of positive potentials .…”
Section: Preparation Of Chelating Polymeric Filmsmentioning
confidence: 99%
“…In particular, high biocompatibility of porphyrins allows considering tetraphenylporphyrins as promising drugs for photodynamic treatment of cancer [6,7] and as possible antioxidant agents [8][9][10][11][12][13]. Development of the methods of formation of polyfunctional porphyrin-based film materials [14] is important for development of catalysts [15], sensors [16], electromagnetic radiation converters [17], electronic devices [18], etc. The method of electrochemical deposition is characterized by simple implementation and allows obtaining well reproducible films of controlled thickness.…”
Section: Introductionmentioning
confidence: 99%
“…Органические проводники перестали быть экзотикой, начиная с конца прошлого века. На сегодняшний день имеется ряд способов получения пленок электропроводящих полимеров на различных подложках: это химическое осаждение из растворов органических соединений, осаждение в вакууме, нанесение полимерных пленок с помощью спин-коатенга, [1][2][3][4] метод испаряющейся капли, [5][6][7] технология Ленгмюра-Блоджетт, [8][9][10][11] электрохимическое осаждение [12][13][14][15] и др. Оптимизация по производительности, цене и контролируемости параметров получаемых устройств определяет, какой из подходов целесообразно применять в том Electrodeposition and Characterization of Polyporphyrin Films или ином конкретном случае.…”
Section: Introductionunclassified
“…[40] Ряд наших недавних исследований посвящен электрохимическим характеристикам электрополимеризованных пленок амино-замещенных тетрафенилпорфиринов и их металлокомплексов. [4,[41][42][43][44][45][46] В настоящей работе представлены результаты исследования электрохимического осаждения и физико-химических свойств порфириновых пленок, осажденных на стеклоуглероде, платине, золоте и ITO-электродах на основе хлоридов Mn(III) 5,10,15,20-тетракис(3-аминофенил) порфина и Mn(III) 5,10,15,20-тетракис(4-аминофенил) порфина в диметилсульфоксиде (ДМСО), дихлорметане (ДХМ) и этаноле. Процесс формирования полипорфириновых пленок на базе указанных прекурсоров происходит с использованием электрохимического метода и метода кварцевого микробаланса.…”
Section: Introductionunclassified