Alifiana, Hasnia (2025) Deteksi Sistein menggunakan Kombinasi Nanokristal 1,5 Difenilkarbazida dan Nanopartikel Emas pada Microfluidic Paper-Based Analytical Device. Other thesis, Institut Teknologi Sepuluh Nopember.
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Abstract
Sistein merupakan asam amino biothiol penting yang kadar abnormalnya dalam tubuh dapat mengindikasikan gangguan metabolik, neurodegeneratif, dan kardiovaskular. Penelitian ini bertujuan untuk mengembangkan sistem sensor kolorimetri untuk deteksi sistein berdasarkan kombinasi antara nanokristal 1,5-difenilkarbazida (DPC-NCs) dan nanopartikel emas (AuNPs), yang diaplikasikan pada perangkat analisis berbasis kertas mikrofluida (μPAD). Nanokristal DPC disintesis melalui metode represipitasi, sedangkan AuNPs diperoleh melalui metode green synthesis dengan memanfaatkan ekstrak kulit buah naga. Kombinasi keduanya membentuk kompleks DPC-AuNPs yang dikarakterisasi dengan spektrofotometer UV-Vis, Particle Size Analyzer (PSA), dan FE-SEM. Hasil UV-Vis menunjukkan pergeseran panjang gelombang maksimum dari 523 nm menjadi 533 nm akibat pembentukan kompleks, PSA menunjukkan ukuran rata-rata partikel sebesar 186,7 nm dengan PDI 0,3748, dan FE-SEM mengonfirmasi morfologi partikel yang dominan sferis, semi-sferis, hingga nanokristalin. Deteksi sistein dilakukan berdasarkan perubahan warna yang dianalisis melalui parameter warna CIELAB. Sensor menunjukkan respon linier terhadap sistein dalam rentang konsentrasi 1–150 mM dengan nilai LOD sebesar 3 mM, serta selektivitas tinggi terhadap sistein dibandingkan asam amino lainnya. Temuan ini menunjukkan bahwa DPC-AuNPs pada μPAD menawarkan pendekatan yang sederhana, sensitif, dan ramah lingkungan untuk pemantauan sistein.
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Cysteine is an important biothiol amino acid whose abnormal levels in the body may indicate metabolic, neurodegenerative, and cardiovascular disorders. This study aims to develop a colorimetric sensing system for cysteine detection based on the combination of 1,5-diphenylcarbazide nanocrystals (DPC-NCs) and gold nanoparticles (AuNPs), applied on a microfluidic paper-based analytical device (μPAD). DPC nanocrystals were synthesized via the reprecipitation method, while AuNPs were synthesized through a green synthesis method utilizing dragon fruit peel extract. The combination of both formed DPC-AuNPs complexes, which were characterized using UV-Vis spectroscopy, particle size analysis (PSA), and field-emission scanning electron microscopy (FE-SEM). UV-Vis spectroscopy showed a redshift from 523 nm to 533 nm upon complex formation, PSA analysis revealed an average size of 186.7 nm (PDI 0.3748), and FE-SEM confirmed spherical, semi-spherical, to nanocrystalin morphology. Cysteine detection was conducted via colorimetric response evaluated through CIELAB color parameters. The sensor responded linearly to cysteine in the 1–150 mM range, with a LOD of 3 mM, and displayed high selectivity over other amino acids. These findings suggest that DPC-AuNPs on μPAD offer a simple, sensitive, and eco-friendly approach for cysteine monitoring.
Item Type: | Thesis (Other) |
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Uncontrolled Keywords: | Biothiol, Kolorimetri, Nanokristal, Nanopartikel Emas, μPAD Biothiol, Colorimetry, Nanocrystal, Gold Nanoparticle, μPAD |
Subjects: | Q Science > QD Chemistry > QD75.2 Chemistry, Analytic |
Divisions: | Faculty of Mathematics and Science > Chemistry > 47201-(S1) Undergraduate Thesis |
Depositing User: | Hasnia Alifiana |
Date Deposited: | 05 Aug 2025 08:18 |
Last Modified: | 05 Aug 2025 08:18 |
URI: | http://repository.its.ac.id/id/eprint/127198 |
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