2020
DOI: 10.1007/s10971-020-05328-6
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Structural features and antimicrobial activity of hydrogels obtained by the sol–gel method from silicon, zinc, and boron glycerolates

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Cited by 14 publications
(10 citation statements)
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“…They are used as biocompatible precursors in the sol–gel synthesis of pharmacologically active hydrogels with reparative, regenerative, antioxidant, immunotropic and antimicrobial effects. 8–10 In this regard, glycerolate of the biogenic iron element can be considered as an innovative biocompatible precursor in the sol–gel synthesis of composite bioactive hydrogels possessing a haemostatic effect characteristic of various iron compounds. 11…”
mentioning
confidence: 99%
“…They are used as biocompatible precursors in the sol–gel synthesis of pharmacologically active hydrogels with reparative, regenerative, antioxidant, immunotropic and antimicrobial effects. 8–10 In this regard, glycerolate of the biogenic iron element can be considered as an innovative biocompatible precursor in the sol–gel synthesis of composite bioactive hydrogels possessing a haemostatic effect characteristic of various iron compounds. 11…”
mentioning
confidence: 99%
“…4b ). The strong peak is attributed to the [B(C 3 H 6 O3) 2 ] − anion with a double spirocyclic structure, 53 indicating the presence of H[B(C 3 H 6 O 3 ) 2 ] with tetrahedral boron in both Complex 1 and Complex 2. 54 The molecular structure of H[B(C 3 H 6 O 3 ) 2 ] is shown in Fig.…”
Section: Resultsmentioning
confidence: 99%
“…The weak peak of Complex 1 at m / z = 117 could be associated with the HOB(C 3 H 6 O 3 ). 53 Additionally, the weak peak at m / z = 131 may be because of the formation of H 3 B 3 O 6 by the dehydration of H 3 BO 3 . HOB(C 3 H 6 O 3 ) and H 3 B 3 O 6 both have trigonal boron atoms, as shown in Fig.…”
Section: Resultsmentioning
confidence: 99%
“…И.Я. Постовского УрО РАН был синтезирован с использованием золь-гель метода целый ряд фармакологически активных элементсодержащих гидрогелей, в том числе, нанокомпозитных, на основе полиолатов кремния, титана, цинка, борав качестве биосовместимых прекурсоров [1][2][3][4][5]. Были установлены общие закономерности и выявлены особенности зольгель процесса для каждого типа прекурсоров.…”
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