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dc.contributor.advisorIrzaman
dc.contributor.authorRAHMAWATI, AULIA
dc.date.accessioned2026-07-30T04:24:26Z
dc.date.available2026-07-30T04:24:26Z
dc.date.issued2026
dc.identifier.urihttp://repository.ipb.ac.id/handle/123456789/176480
dc.description.abstractPenelitian ini mengembangkan sensor cahaya film tipis Ba0.5Sr0.5TiO3 (BST) yang didadah mangan (Mn), diintegrasikan dengan sensor suhu DHT22 dalam sistem monitoring berbasis Internet of Things (IoT). Film tipis BST-Mn dengan variasi pendadah 0%, 0,5%, dan 1% disintesis melalui Chemical Solution Deposition, spin coating, dan annealing 550°C, lalu dikarakterisasi meliputi ketebalan, XRD, UV-Vis, dan I-V. Sistem dirancang menggunakan ESP32 terintegrasi ADS1115, DHT22, dan buzzer, dengan tampilan data real-time melalui dashboard website. Hasil menunjukkan ketebalan film 17,2–31,2 nm, band gap 2,13–3,27 eV, dan sampel 0,5% Mn menghasilkan tegangan keluaran fotodioda tertinggi (27,9 mV). Sensitivitas sensor tertinggi pada sampel 1% Mn (15,35%), suhu tetap stabil dengan selisih 0,1–0,4°C. Sistem berhasil mengintegrasikan kedua sensor secara real-time, menunjukkan potensi BST didadah Mn untuk sistem monitoring lingkungan berbasis IoT.
dc.description.abstractThis research developed a light sensor based on manganese-doped Ba0.5Sr0.5TiO3 (BST) thin film, integrated with a DHT22 temperature sensor in an Internet of Things (IoT)-based monitoring system. BST-Mn thin films with dopant variations of 0%, 0.5%, and 1% were synthesized via Chemical Solution Deposition, spin coating, and annealing at 550°C, then characterized for thickness, XRD, UV-Vis, and I-V properties. The system was designed using an ESP32 microcontroller integrated with an ADS1115 module, DHT22 sensor, and buzzer, displaying real-time data through a website dashboard. Results showed film thickness of 17.2–31.2 nm, a band gap of 2.13–3.27 eV, and the 0.5% Mn sample produced the highest photodiode output voltage (27.9 mV). The highest sensor sensitivity was obtained for the 1% Mn sample (15.35%), while temperature remained stable with a difference of 0.1–0.4°C. The system successfully integrated both sensors in real time, demonstrating the potential of Mn-doped BST for IoT-based environmental monitoring systems.
dc.description.sponsorship
dc.language.isoid
dc.publisherIPB Universityid
dc.titleImplementasi Film Tipis Ba0.5Sr0.5TiO3 Didadah Mangan dan Sensor DHT22 pada Sistem IoT untuk Monitoring Kondisi Cahaya dan Suhuid
dc.title.alternativeImplementation of Manganese-Doped Ba0.5Sr0.5TiO3 Thin Film and DHT22 Sensor in an IoT System for Monitoring Light Conditions and Temperature
dc.typeTugas Akhir
dc.subject.keywordBST thin filmid
dc.subject.keywordDHT22id
dc.subject.keywordESP32id
dc.subject.keywordIoTid
dc.subject.keywordlight sensorid
dc.subtypeUndergraduate Theses


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