Synthesis of The Tangerine-based Cdots and AgNp-Cdots Composite

Aprilia Kristian, S. Wahyuni
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Abstract

Silver nanoparticles (AgNp) have been widely developed, one of which is an antibacterial agent. The ability of AgNp to inhibit bacteria is unquestionable. These properties and characteristics can be studied further by adding defects. The defect used is Cdots from tangerines. Cdots are new materials that can be synthesized from natural materials and have unique properties. AgNp itself was synthesized by the chemical reduction method with sodium citrate as a reducing agent, while Cdots was synthesized by hydrothermal method. The results of the synthesis were analyzed using the Fourier Transform Infrared (FT-IR) method. Absorption appears at a wave number of 1637 cm-1 which indicates the presence of C=C, C=O bonds which are characteristic of Cdots. For AgNp, absorption appears at a wave number of 593.11 cm-1 which indicates the presence of Ag vibrations. Analysis with UV-Vis spectrophotometer gave the results at a wavelength of 431 nm absorbance AgNp-Cdots of 0.723 and a wavelength of 422 nm AgNp absorbance of 0.285. The results of the Particle Size Analyzer (PSA) analysis showed that AgNp-Cdots had an average size of 38.7 nm with a PI of 0.499 and pure AgNp of 51.8 nm with a PI of 0.566. Antibacterial activity of AgNp-Cdots against E. coli bacteria showed an inhibition zone of 2 mm while AgNp showed an inhibition zone of 5 mm.
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橘子基Cdots及AgNp-Cdots复合材料的合成
银纳米颗粒(AgNp)已得到广泛的开发,其中之一是抗菌药物。AgNp抑制细菌的能力是毋庸置疑的。这些性质和特征可以通过添加缺陷来进一步研究。使用的缺陷是来自橘子的Cdots。Cdots是一种由天然材料合成的新型材料,具有独特的性能。以柠檬酸钠为还原剂,化学还原法合成AgNp,水热法合成Cdots。利用傅里叶变换红外(FT-IR)方法对合成结果进行了分析。吸收出现在波数为1637 cm-1的地方,这表明存在C=C, C=O键,这是Cdots的特征。对于AgNp,吸收波数为593.11 cm-1,表明存在Ag振动。紫外可见分光光度计分析结果表明,在431 nm波长处AgNp- cdots的吸光度为0.723,在422 nm波长处AgNp的吸光度为0.285。PSA分析结果表明,AgNp- cdots的平均粒径为38.7 nm, PI为0.499;纯AgNp的粒径为51.8 nm, PI为0.566。AgNp- cdots对大肠杆菌的抑菌活性为2 mm, AgNp的抑菌活性为5 mm。
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