OPTIMASI, KARAKTERISASI, SERTA UJI AKTIVITAS ANTIOKSIDAN NANOPARTIKEL PERAK HASIL SINTESIS MENGGUNAKAN EKSTRAK KULIT PETAI (PARKIA SPECIOSA) SEBAGAI BIOREDUKTOR

Petai (Parkia speciosa) is one of the typical plants that grows in Indonesia and can be used as a source of antioxidants. In this study, petai peels was used as a bioreductant in the green synthesis of silver nanoparticles. Petai peels that has been chopped and dried then macerated in water for 2...

Full description

Saved in:
Bibliographic Details
Main Author: Pangestuti, Novi
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/69359
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:69359
spelling id-itb.:693592022-09-21T16:03:02ZOPTIMASI, KARAKTERISASI, SERTA UJI AKTIVITAS ANTIOKSIDAN NANOPARTIKEL PERAK HASIL SINTESIS MENGGUNAKAN EKSTRAK KULIT PETAI (PARKIA SPECIOSA) SEBAGAI BIOREDUKTOR Pangestuti, Novi Indonesia Final Project green synthesis, silver nanoparticles, petai peels, antioxidant activity INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/69359 Petai (Parkia speciosa) is one of the typical plants that grows in Indonesia and can be used as a source of antioxidants. In this study, petai peels was used as a bioreductant in the green synthesis of silver nanoparticles. Petai peels that has been chopped and dried then macerated in water for 2 hours. The filtered extract solution was reacted with AgNO3 solution and stirred while reacting. The mixture was then microwaved and incubated for 15 minutes. In the synthesis of nanoparticles, optimization was carried out under various conditions, such as variations in AgNO3 concentration, extract concentration, ratio of AgNO3 solution and extract, microwave power and time, and variations in pH. The formed nanoparticles were then characterized using UV-Vis spectrophotometry, Particle Size Analyzer (PSA), Fourier Transform Infrared Spectroscopy (FTIR), Transmission Electron Microscopy (TEM). From the test results, it was found that the optimal conditions for the synthesis of silver nanoparticles were AgNO3 concentration of 7 mM, extract concentration of 7%, ratio 1:1 (v/v), 200 Watt microwave power with 120 seconds and alkaline conditions pH 9. Nanoparticle characterization results showed that the nanoparticles formed were spherical or spheric, with an average size of 58.6 nm with a PI of 0.280. The IC50 from antioxidant activity test, IC50 of vitamin C, AgNO3, extract and silver nanoparticles is 13.92 µg/mL; 55.246 µg/mL; 38.9807 µg/mL; dan 47.728 µg/mL. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Petai (Parkia speciosa) is one of the typical plants that grows in Indonesia and can be used as a source of antioxidants. In this study, petai peels was used as a bioreductant in the green synthesis of silver nanoparticles. Petai peels that has been chopped and dried then macerated in water for 2 hours. The filtered extract solution was reacted with AgNO3 solution and stirred while reacting. The mixture was then microwaved and incubated for 15 minutes. In the synthesis of nanoparticles, optimization was carried out under various conditions, such as variations in AgNO3 concentration, extract concentration, ratio of AgNO3 solution and extract, microwave power and time, and variations in pH. The formed nanoparticles were then characterized using UV-Vis spectrophotometry, Particle Size Analyzer (PSA), Fourier Transform Infrared Spectroscopy (FTIR), Transmission Electron Microscopy (TEM). From the test results, it was found that the optimal conditions for the synthesis of silver nanoparticles were AgNO3 concentration of 7 mM, extract concentration of 7%, ratio 1:1 (v/v), 200 Watt microwave power with 120 seconds and alkaline conditions pH 9. Nanoparticle characterization results showed that the nanoparticles formed were spherical or spheric, with an average size of 58.6 nm with a PI of 0.280. The IC50 from antioxidant activity test, IC50 of vitamin C, AgNO3, extract and silver nanoparticles is 13.92 µg/mL; 55.246 µg/mL; 38.9807 µg/mL; dan 47.728 µg/mL.
format Final Project
author Pangestuti, Novi
spellingShingle Pangestuti, Novi
OPTIMASI, KARAKTERISASI, SERTA UJI AKTIVITAS ANTIOKSIDAN NANOPARTIKEL PERAK HASIL SINTESIS MENGGUNAKAN EKSTRAK KULIT PETAI (PARKIA SPECIOSA) SEBAGAI BIOREDUKTOR
author_facet Pangestuti, Novi
author_sort Pangestuti, Novi
title OPTIMASI, KARAKTERISASI, SERTA UJI AKTIVITAS ANTIOKSIDAN NANOPARTIKEL PERAK HASIL SINTESIS MENGGUNAKAN EKSTRAK KULIT PETAI (PARKIA SPECIOSA) SEBAGAI BIOREDUKTOR
title_short OPTIMASI, KARAKTERISASI, SERTA UJI AKTIVITAS ANTIOKSIDAN NANOPARTIKEL PERAK HASIL SINTESIS MENGGUNAKAN EKSTRAK KULIT PETAI (PARKIA SPECIOSA) SEBAGAI BIOREDUKTOR
title_full OPTIMASI, KARAKTERISASI, SERTA UJI AKTIVITAS ANTIOKSIDAN NANOPARTIKEL PERAK HASIL SINTESIS MENGGUNAKAN EKSTRAK KULIT PETAI (PARKIA SPECIOSA) SEBAGAI BIOREDUKTOR
title_fullStr OPTIMASI, KARAKTERISASI, SERTA UJI AKTIVITAS ANTIOKSIDAN NANOPARTIKEL PERAK HASIL SINTESIS MENGGUNAKAN EKSTRAK KULIT PETAI (PARKIA SPECIOSA) SEBAGAI BIOREDUKTOR
title_full_unstemmed OPTIMASI, KARAKTERISASI, SERTA UJI AKTIVITAS ANTIOKSIDAN NANOPARTIKEL PERAK HASIL SINTESIS MENGGUNAKAN EKSTRAK KULIT PETAI (PARKIA SPECIOSA) SEBAGAI BIOREDUKTOR
title_sort optimasi, karakterisasi, serta uji aktivitas antioksidan nanopartikel perak hasil sintesis menggunakan ekstrak kulit petai (parkia speciosa) sebagai bioreduktor
url https://digilib.itb.ac.id/gdl/view/69359
_version_ 1822006029110476800