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Synthesis of Nano-sized Lead Sulfide Thin Films from Avocado (Glycosmis Cochinchinensis) Leaf Extracts to Empower Pollution Remediation

Overview
Journal Sci Rep
Specialty Science
Date 2022 Jul 9
PMID 35810188
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Abstract

The translucent and nano-crystalline PbS films were equipped with the CBD techniques on metal substrates by the temperature of 90 °C through aqueous solutions of Lead Nitrate and Thiourea. The XRD phases verify the crystalline property of synthesized thin films that the shape falls in the cubic structures with favourite orientations. It revealed that the prepared material is cubic crystal oriented as (111), (110), (100) and (101) crystal planes. The crystalline size varied between 0.4 and 0.7 nm. The band gap was assessed using UV-vis captivation spectra and Tau relations. The average energy band gap was found to be 2.43 eV which is greater than bulk materials of PbS; because of quantum confinements of Lead Sulfide Nano Crystalline thin films, and PL also confirms this result. The variation in band gap with Leaf extracts and particle sizes displayed blue shifts characteristic of electrons quantum confinements. SEM micrograph shows extremely uniform and adherent PbS films are found at higher PH values. It was evidently observed that the viscosity of the synthesized thin films reduced from 563 to 111 nm with a rise in pH value. The sample prepared at pH 4 shows good performance, and thin films deposited from Avocado (Glycosmis cochinchinensis) leaf extracts are a promising method to empower pollution remediation and future energy.

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References
1.
Cohen M . Tulsi - Ocimum sanctum: A herb for all reasons. J Ayurveda Integr Med. 2015; 5(4):251-9. PMC: 4296439. DOI: 10.4103/0975-9476.146554. View

2.
Klomchit A, Calderin J, Jaidee W, Watla-Iad K, Brooks S . Napthoquinones from sp.-Antibiotic Activity against , the Causative Agent of Bacterial Fruit Blotch in Watermelon and Melon. J Fungi (Basel). 2021; 7(5). PMC: 8151544. DOI: 10.3390/jof7050370. View

3.
Batool M, Shafeeq A, Haider B, Ahmad N . TiO Nanoparticle Filler-Based Mixed-Matrix PES/CA Nanofiltration Membranes for Enhanced Desalination. Membranes (Basel). 2021; 11(6). PMC: 8227052. DOI: 10.3390/membranes11060433. View

4.
Reyes-Gil K, Robinson D . WO3-enhanced TiO2 nanotube photoanodes for solar water splitting with simultaneous wastewater treatment. ACS Appl Mater Interfaces. 2013; 5(23):12400-10. DOI: 10.1021/am403369p. View

5.
Pavelkova R, Matouskova P, Hoova J, Porizka J, Marova I . Preparation and characterisation of organic UV filters based on combined PHB/liposomes with natural phenolic compounds. J Biotechnol. 2021; 324S:100021. DOI: 10.1016/j.btecx.2020.100021. View