2013
DOI: 10.1016/j.snb.2013.03.106
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Green synthesis of silver nanoparticles and their application for the development of optical fiber based hydrogen peroxide sensor

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Cited by 173 publications
(91 citation statements)
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“…(10) The effect of AgNO 3 concentration on AgNP synthesis was ascertained by conducting an autoclaved reaction at different amounts of AgNO 3 (1-5 mM) where the concentration of Panax ginseng root extract was kept constant at 0.2% (w/v). The effect of various concentrations of Panax ginseng root extract (0.04-0.2% w/v) on the synthesis of AgNPs was also studied while keeping the AgNO 3 concentration fixed as 1 mM.…”
Section: Silver Nanoparticles Synthesismentioning
confidence: 99%
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“…(10) The effect of AgNO 3 concentration on AgNP synthesis was ascertained by conducting an autoclaved reaction at different amounts of AgNO 3 (1-5 mM) where the concentration of Panax ginseng root extract was kept constant at 0.2% (w/v). The effect of various concentrations of Panax ginseng root extract (0.04-0.2% w/v) on the synthesis of AgNPs was also studied while keeping the AgNO 3 concentration fixed as 1 mM.…”
Section: Silver Nanoparticles Synthesismentioning
confidence: 99%
“…(1,8) To address such threats, the green chemistry method has been found as a safe and widely accepted method, with features such as simplicity, cost-effectiveness, environment-friendiness, and biocompatibility with biomedical and pharmaceutical applications. (9,10) Silver, a known material for several applications, has been synthesized in nanosize using several physical and chemical methods and well reported in the literature. Similarly, the green or environment-friendly synthesis of silver nanoparticles (AgNPs) has been reported using seed/plant extracts, microorganisms, plant latex, and biopolymers.…”
Section: Introductionmentioning
confidence: 99%
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“…Примерами являются оптические волокна и волноводы с металличе-скими наночастицами на поверхности [1], химические [2] и биологические сенсоры [3,4], плазмонные волноводы и нанорезонаторы [5], наноантенны [6] и оптические нанотранзисторы [7], метаматериалы [8], концентраторы электромагнитного поля [9], оптические композиты [10], LED [11], плазмонные фотонные кристаллы [12] и дру-гие устройства наноплазмоники [13][14][15]. Как правило, для формирования металлических наноструктур при-меняется фото-, электронная и ионная литографии с использованием соответствующих резистов.…”
Section: Introductionunclassified