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Citation Check: Singh Sharma Ansu Goyal Tyagi (2021)

Date: 2026-04-25

Format: APA | Mode: all

Results: 7 validated, 0 suggestions, 0 errors out of 7 total

# Code Similarity Reference
1 OK 100%
ORIGINAL:
Singh P, Sharma RK, Ansu AK, Goyal R, Sarı A, Tyagi VV. A comprehensive review on development of eutectic organic phase change materials and their composites for low and medium range thermal energy storage applications. Sol Energy Mater Sol Cells. 2021; 223:110955. doi:10.1016/j.solmat.2020.110955
FORMATTED (APA):
Singh, P., Sharma, R., Ansu, A., Goyal, R., Sarı, A., & Tyagi, V. (2021). A comprehensive review on development of eutectic organic phase change materials and their composites for low and medium range thermal energy storage applications. Solar Energy Materials and Solar Cells, 223, 110955. https://doi.org/10.1016/j.solmat.2020.110955
2 OK 100%
ORIGINAL:
Temiz A, Hekimoğlu G, Köse Demirel G, Sarı A, Mohamad Amini MH. Phase change material impregnated wood for passive thermal management of timber buildings. Int J Energy Res. 2020; 44: 10495-10505. doi:10.1002/er.5679
FORMATTED (APA):
Temiz, A., Hekimoğlu, G., Köse Demirel, G., Sarı, A., & Mohamad Amini, M. H. (2020). Phase change material impregnated wood for passive thermal management of timber buildings. International Journal of Energy Research, 44(13), 10495-10505. https://doi.org/10.1002/er.5679
3 OK 100%
ORIGINAL:
Ma L, Wang Q, Li L. Delignified wood/capric acid-palmitic acid mixture stable-form phase change material for thermal storage. Sol Energy Mater Sol Cells. 2019; 194: 215-221. doi:10.1016/j.solmat.2019.02.026
FORMATTED (APA):
Ma, L., Wang, Q., & Li, L. (2019). Delignified wood/capric acid-palmitic acid mixture stable-form phase change material for thermal storage. Solar Energy Materials and Solar Cells, 194, 215-221. https://doi.org/10.1016/j.solmat.2019.02.026
4 OK 100%
ORIGINAL:
Duquesne M, Mailhé C, Doppiu S, et al. Characterization of fatty acids as biobased organic materials for latent heat storage. Materials. 2021; 14:4707. doi:10.3390/ma14164707
FORMATTED (APA):
Duquesne, M., Mailhé, C., Doppiu, S., Dauvergne, J., Santos-Moreno, S., Godin, A., Fleury, G., Rouault, F., & Palomo del Barrio, E. (2021). Characterization of Fatty Acids as Biobased Organic Materials for Latent Heat Storage. Materials, 14(16), 4707. https://doi.org/10.3390/ma14164707
5 OK 100%
ORIGINAL:
Frahat NB, Ustaoğlu A, Gençel O. Fuel, cost, energy efficiency and CO2 emission performance of PCM integrated wood fiber composite phase change material at different climates. Sci Rep. 2023; 13(1): 7714. doi:10.1038/s41598-023-34616-8
FORMATTED (APA):
Frahat, N. B., Ustaoglu, A., Gencel, O., Sarı, A., Hekimoğlu, G., Yaras, A., & del Coz Díaz, J. J. (2023). Fuel, cost, energy efficiency and CO2 emission performance of PCM integrated wood fiber composite phase change material at different climates. Scientific Reports, 13(1), 7714. https://doi.org/10.1038/s41598-023-34616-8
6 OK 100%
ORIGINAL:
Mohamad Amini MH, Temiz A, Hekimoğlu G, Köse Demirel G, Sarı A. Properties of scots pine wood impregnated with capric acid for potential energy saving building material. Holzforschung. 2022; 76: 744-753. doi:10.1515/hf-2022-0007
FORMATTED (APA):
Mohamad Amini, M. H., Temiz, A., Hekimoğlu, G., Köse Demirel, G., & Sarı, A. (2022). Properties of Scots pine wood impregnated with capric acid for potential energy saving building material. Holzforschung, 76(8), 744-753. https://doi.org/10.1515/hf-2022-0007
7 OK 100%
ORIGINAL:
Grzybek J, Paschová Z, Meffert P, Petutschnigg A, Schnabel T. Impregnation of Norway spruce with low melting-point binary fatty acid as a phase-change material. Wood Mater Sci Eng. 2023; 18: 1-10. doi:10.1080/17480272.2023.2186266
FORMATTED (APA):
Grzybek, J., Paschová, Z., Meffert, P., Petutschnigg, A., & Schnabel, T. (2023). Impregnation of Norway spruce with low melting-point binary fatty acid as a phase-change material. Wood Material Science & Engineering, 18(5), 1755-1764. https://doi.org/10.1080/17480272.2023.2186266

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