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            <front>

                <journal-meta>
                                                                <journal-id>kojose</journal-id>
            <journal-title-group>
                                                                                    <journal-title>Kocaeli Journal of Science and Engineering</journal-title>
            </journal-title-group>
                                        <issn pub-type="epub">2667-484X</issn>
                                                                                            <publisher>
                    <publisher-name>Kocaeli University</publisher-name>
                </publisher>
                    </journal-meta>
                <article-meta>
                                        <article-id pub-id-type="doi">10.34088/kojose.1562878</article-id>
                                                                <article-categories>
                                            <subj-group  xml:lang="en">
                                                            <subject>Plating Technology</subject>
                                                            <subject>Material Characterization</subject>
                                                    </subj-group>
                                            <subj-group  xml:lang="tr">
                                                            <subject>Kaplama Teknolojisi</subject>
                                                            <subject>Malzeme Karekterizasyonu</subject>
                                                    </subj-group>
                                    </article-categories>
                                                                                                                                                        <title-group>
                                                                                                                        <article-title>Impact of Annealing Temperature on Physical Properties of Manganese Sulfide Thin Film</article-title>
                                                                                                                                                                                                <trans-title-group xml:lang="tr">
                                    <trans-title>Impact of Annealing Temperature on Physical Properties of Manganese Sulfide Thin Film</trans-title>
                                </trans-title-group>
                                                                                                    </title-group>
            
                                                    <contrib-group content-type="authors">
                                                                        <contrib contrib-type="author">
                                                                    <contrib-id contrib-id-type="orcid">
                                        https://orcid.org/0000-0001-9519-8483</contrib-id>
                                                                <name>
                                    <surname>Çayır Taşdemirci</surname>
                                    <given-names>Tuba</given-names>
                                </name>
                                                                    <aff>Erzincan Binali Yıldırım Üniversitesi Mühendislik Fakültesi</aff>
                                                            </contrib>
                                                                                </contrib-group>
                        
                                        <pub-date pub-type="pub" iso-8601-date="20250531">
                    <day>05</day>
                    <month>31</month>
                    <year>2025</year>
                </pub-date>
                                        <volume>8</volume>
                                        <issue>1</issue>
                                        <fpage>86</fpage>
                                        <lpage>93</lpage>
                        
                        <history>
                                    <date date-type="received" iso-8601-date="20241007">
                        <day>10</day>
                        <month>07</month>
                        <year>2024</year>
                    </date>
                                                    <date date-type="accepted" iso-8601-date="20250422">
                        <day>04</day>
                        <month>22</month>
                        <year>2025</year>
                    </date>
                            </history>
                                        <permissions>
                    <copyright-statement>Copyright © 2018, Kocaeli Journal of Science and Engineering</copyright-statement>
                    <copyright-year>2018</copyright-year>
                    <copyright-holder>Kocaeli Journal of Science and Engineering</copyright-holder>
                </permissions>
            
                                                                                                <abstract><p>MnS thin films were grown on glass substrates at room temperature using the SILAR method, which is simple, easy to apply, and cheap. The grown thin films were annealed at 150, 200, 250, and 3000C for 30 minutes, respectively. The structural and optical properties of the obtained thin films were examined. XRD and SEM analyses were performed for structural properties, and UV-Vis analyses were performed for optical properties. Based on the results, it can be concluded that the annealing temperature has a positive impact on the structural and optical properties of MnS thin films.</p></abstract>
                                                                                                                                    <trans-abstract xml:lang="tr">
                            <p>MnS thin films were grown on glass substrates at room temperature using the SILAR method, which is simple, easy to apply, and cheap. The grown thin films were annealed at 150, 200, 250, and 3000C for 30 minutes, respectively. The structural and optical properties of the obtained thin films were examined. XRD and SEM analyses were performed for structural properties, and UV-Vis analyses were performed for optical properties. Based on the results, it can be concluded that the annealing temperature has a positive impact on the structural and optical properties of MnS thin films.</p></trans-abstract>
                                                            
            
                                                            <kwd-group>
                                                    <kwd>MnS</kwd>
                                                    <kwd>  Thin Film</kwd>
                                                    <kwd>  Annealing Temperature</kwd>
                                                    <kwd>  SILAR</kwd>
                                            </kwd-group>
                                                        
                                                                            <kwd-group xml:lang="tr">
                                                    <kwd>MnS</kwd>
                                                    <kwd>  Thin Film</kwd>
                                                    <kwd>  Annealing Temperature</kwd>
                                                    <kwd>  SILAR</kwd>
                                            </kwd-group>
                                                                                                            </article-meta>
    </front>
    <back>
                            <ref-list>
                                    <ref id="ref1">
                        <label>1</label>
                        <mixed-citation publication-type="journal">[1] 	Pujari R.B., Lokhande A.C., Yadav A.A., Kim J.H., Lokhande C.D., 2016. Synthesis of MnS microfibers for high-performance flexible supercapacitors. Materials &amp; Design, 108, pp.510-517.</mixed-citation>
                    </ref>
                                    <ref id="ref2">
                        <label>2</label>
                        <mixed-citation publication-type="journal">[2]	Wang S., Li K., Zhai R., Wang H., Hou Y., Yan H., 2005. Synthesis of metastable γ-manganese sulfide crystallites by microwave irradiation. Materials Chemistry and Physics, 91, pp.298-300.</mixed-citation>
                    </ref>
                                    <ref id="ref3">
                        <label>3</label>
                        <mixed-citation publication-type="journal">[3] 	Zhao P., Zeng Q., He X., Tang H., Huang K., 2008. Preparation of γ-MnS hollow spheres consisting of cones by a hydrothermal method. Journal of Crystal Growth, 310, pp. 4268-4272.</mixed-citation>
                    </ref>
                                    <ref id="ref4">
                        <label>4</label>
                        <mixed-citation publication-type="journal">[4] 	Hernández S.A.M., Sandoval S.J., Pérez R.C, Delgado G.T., Chao B.S., Sandoval O.J., 2003. Preparation and characterization of polycrystalline MnS thin films by the RF-sputtering technique above room temperature. Journal of Crystal Growth, 256, pp.12-19.</mixed-citation>
                    </ref>
                                    <ref id="ref5">
                        <label>5</label>
                        <mixed-citation publication-type="journal">[5]	Gümüs C., Ulutaş C., Ufuktepe Y., 2007. Optical and structural properties of manganese sulfide thin films. Optical Materials, 29, pp.1183-1187.</mixed-citation>
                    </ref>
                                    <ref id="ref6">
                        <label>6</label>
                        <mixed-citation publication-type="journal">[6] 	 Ulutaş C., Gumus C., 2016. Annealing effect on structural and optical properties of chemical bath deposited MnS thin film.AIP Conference Proceedings, 2016, 1722, pp.080008</mixed-citation>
                    </ref>
                                    <ref id="ref7">
                        <label>7</label>
                        <mixed-citation publication-type="journal">[7] 	Gümüs C., Ulutaş C., Esen O. M., Özkendir R., Ufuktepe Y., 2005. Preparation and characterization of crystalline MnS thin films by chemical bath deposition. Thin Solid Films, 492, pp 1-5.</mixed-citation>
                    </ref>
                                    <ref id="ref8">
                        <label>8</label>
                        <mixed-citation publication-type="journal">[8]	 Hannachi A., Maghraoui-Meherzi H., 2017.Growth of different phases and morphological features of MnS thin films by chemical bath deposition: Effect of deposition parameters and annealing. Journal of Solid State Chemistry, 247, pp. 120–130.</mixed-citation>
                    </ref>
                                    <ref id="ref9">
                        <label>9</label>
                        <mixed-citation publication-type="journal">[9] 	Hannachi A., Hammami S., Raouafi N., Maghraoui-Meherzi H., 2016. Preparation of manganese sulfide (MnS) thin films by chemical bath deposition: Application of the experimental design methodology. Journal of Alloys and Compounds, 663, pp. 507-515.</mixed-citation>
                    </ref>
                                    <ref id="ref10">
                        <label>10</label>
                        <mixed-citation publication-type="journal">[10]	Pahtan H.M., Kale S.S., Lokhande C.D., Han S.H., Joo O.S., 2007. Preparation and characterization of amorphous manganese sulfide thin films by SILAR method. Materials Research Bulletin, 42, pp. 1565-1569.</mixed-citation>
                    </ref>
                                    <ref id="ref11">
                        <label>11</label>
                        <mixed-citation publication-type="journal">[11]	Moreno-García H., Sigala-Valdez J.O., Martínez Blanco Ma del R., Cruz Reyes I.,   Durón-Torres S.M., Escalante-García I.L., Del Rio-De Santiago A., 2024. Effect in variation of the cationic precursor temperature on the electrical and crystalline properties of MnS growth by SILAR. Heliyon, 10, pp. e26703.</mixed-citation>
                    </ref>
                                    <ref id="ref12">
                        <label>12</label>
                        <mixed-citation publication-type="journal">[12]	Liu X., Zhang Y., Zhang Y., Bi Z., Zhou J., Xu R., Ruan S., 2025. High response MSM UV photodetectors based on MgZnO/MnS heterojunction. Materials Science in Semiconductor Processing, 185, pp.108946-108953.</mixed-citation>
                    </ref>
                                    <ref id="ref13">
                        <label>13</label>
                        <mixed-citation publication-type="journal">[13]	Zheng Z., Liu D., Sun X., Geng Z., Wang Q., Hou J., 2025. SILAR synthesis of CdS-ZnS/TiO2 NTs for photocatalytic H2 evolution and dye degradation. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 707, pp.135922-135932.</mixed-citation>
                    </ref>
                                    <ref id="ref14">
                        <label>14</label>
                        <mixed-citation publication-type="journal">[14]	Lee W.J., Hsua T. W., Lee W.L., Thaia T. T., Chen C. C., 2025. Surface modification of carbon felt electrodes with SnO2 nanocoatings by using the SILAR method for enhanced performance in vanadium redox flow batteries. Applied Surface Science, 686, pp.162150-162162.</mixed-citation>
                    </ref>
                                    <ref id="ref15">
                        <label>15</label>
                        <mixed-citation publication-type="journal">[15]	Tan H. J., Shafie S., Zainal Z., Tan S. T., Talib Z. A., Bahrudin N. N., 2025. ZnO nanorods anchored SnS through successive ionic layer adsorption and reaction (SILAR) approach for enhanced performance photoelectrochemical cell. Applied Materials Today, 42, pp.102581-102591.</mixed-citation>
                    </ref>
                                    <ref id="ref16">
                        <label>16</label>
                        <mixed-citation publication-type="journal">[16] 	Reddy D.S., Reddy D.R., Reddy B.K., Reddy A.M., Gunasekhar K.R., Reddy P.S., 2007. Annealing effect on physical properties of thermally evaporated MnS nanocrystalline films. Journal Optoelectronic Advenced Materials, 9, pp.2019-2022.</mixed-citation>
                    </ref>
                                    <ref id="ref17">
                        <label>17</label>
                        <mixed-citation publication-type="journal">[17]	Hannachi A., Segura A., Maghraoui-Meherzi H., 2016. Growth of manganese sulfide (a-MnS) thin films by thermal vacuum evaporation: Structural, morphological and optical properties. Materials Chemistry and Physics, 181, pp. 326-332.</mixed-citation>
                    </ref>
                                    <ref id="ref18">
                        <label>18</label>
                        <mixed-citation publication-type="journal">[18]	Tigwere Gervais A.,   Khan Malik D., Nyamen Linda D.,   Aboud Ahmed A., Moyo T., Dlamini Sanele T., Ndifon Peter T., Revaprasadu N., 2022. Molecular precursor route for the phase selective synthesis of α-MnS or metastable γ-MnS nanomaterials for magnetic studies and deposition of thin films by AACVD. Materials Science in Semiconductor Processing, 139, pp.106330- 106339.</mixed-citation>
                    </ref>
                                    <ref id="ref19">
                        <label>19</label>
                        <mixed-citation publication-type="journal">[19]	Yıldırım M. A., Yıldırım S. T., Cavanmirza İ., Ateş A., 2016. Chemically synthesis and characterization of MnS thin films by SILAR method. Chemical Physics Letters, 647, pp. 73-78.</mixed-citation>
                    </ref>
                                    <ref id="ref20">
                        <label>20</label>
                        <mixed-citation publication-type="journal">[20]	Chaki S. H., Chauhan S. M., Tailor J. T., Deshpande M. P., 2017. Synthesis of manganese sulfide (MnS) thin films by chemical bath deposition and their characterization. Journal of Materials Research and Technology, 6, pp. 123-128.</mixed-citation>
                    </ref>
                                    <ref id="ref21">
                        <label>21</label>
                        <mixed-citation publication-type="journal">[21]	Yang Q., Chen Q., Gong F., Li Y., 2023. Fabrication of MnCoS Thin Films Deposited by the SILAR Method with the Assistance of Surfactants and Supercapacitor Properties. Coating, 13 pp. 908-920.</mixed-citation>
                    </ref>
                                    <ref id="ref22">
                        <label>22</label>
                        <mixed-citation publication-type="journal">[22]	Tiwari P., Jaiswal J., Chandra R., 2019. Optical and electrical properties of highly ordered α-, γ- and α + γ-MnS films deposited by reactive sputtering technique. Journal of Applied Physics, 126, 213108-213120.</mixed-citation>
                    </ref>
                                    <ref id="ref23">
                        <label>23</label>
                        <mixed-citation publication-type="journal">[23]	Taşdemirci T.Ç., 2020. Copper Oxide Thin Films Synthesized by SILAR: Role of Varying Annealing Temperature. Electronic Materials Letters, 16, pp.239-246.</mixed-citation>
                    </ref>
                                    <ref id="ref24">
                        <label>24</label>
                        <mixed-citation publication-type="journal">[24]	Akaltun Y., 2023. Fabrication and Characterization of NiSe2 Films Prepared by SILAR Method. IEEJ Transactions on Electrical and Electronic Engineering, 18, pp.1414-1418.</mixed-citation>
                    </ref>
                                    <ref id="ref25">
                        <label>25</label>
                        <mixed-citation publication-type="journal">[25]	Biswas S., Kar S., Chaudhuri S., 2007. Effect of the precursors and solvents on the size, shape and crystal structure of manganese sulfide crystals in solvothermal synthesis. Materials Science Engineering B, 142, pp.69-77.</mixed-citation>
                    </ref>
                                    <ref id="ref26">
                        <label>26</label>
                        <mixed-citation publication-type="journal">[26]	Girish M., Dhandayuthapani T., Sivakumar R., Sanjeeviraja C., 2015. MnS thin films prepared by a simple and novel nebulizer technique: report on the structural, optical, and dispersion energy parameters. Journal of Materials Science: Materials Electron, 26, pp.3670-3684.</mixed-citation>
                    </ref>
                                    <ref id="ref27">
                        <label>27</label>
                        <mixed-citation publication-type="journal">[27]	Çayir Taşdemirci T., 2025. Synthesis of MnS thin film: investigation of thickness-dependent physical properties. Indian Journal of Physics, pp. 1-8.</mixed-citation>
                    </ref>
                            </ref-list>
                    </back>
    </article>
