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Enhanced performance of a promising Au/TMDC heterostructure composed of MoTe<sub>2</sub> nanosheets decorated with Au5 clusters: A DFT study
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E. Vessally Et Al. , "Enhanced performance of a promising Au/TMDC heterostructure composed of MoTe2 nanosheets decorated with Au5 clusters: A DFT study," COMPUTATIONAL AND THEORETICAL CHEMISTRY , vol.1242, 2024

Vessally, E. Et Al. 2024. Enhanced performance of a promising Au/TMDC heterostructure composed of MoTe2 nanosheets decorated with Au5 clusters: A DFT study. COMPUTATIONAL AND THEORETICAL CHEMISTRY , vol.1242 .

Vessally, E., Rzayev, R., Azizi, B., Sharma, P., & Kumar, A., (2024). Enhanced performance of a promising Au/TMDC heterostructure composed of MoTe2 nanosheets decorated with Au5 clusters: A DFT study. COMPUTATIONAL AND THEORETICAL CHEMISTRY , vol.1242.

Vessally, E Et Al. "Enhanced performance of a promising Au/TMDC heterostructure composed of MoTe2 nanosheets decorated with Au5 clusters: A DFT study," COMPUTATIONAL AND THEORETICAL CHEMISTRY , vol.1242, 2024

Vessally, E Et Al. "Enhanced performance of a promising Au/TMDC heterostructure composed of MoTe2 nanosheets decorated with Au5 clusters: A DFT study." COMPUTATIONAL AND THEORETICAL CHEMISTRY , vol.1242, 2024

Vessally, E. Et Al. (2024) . "Enhanced performance of a promising Au/TMDC heterostructure composed of MoTe2 nanosheets decorated with Au5 clusters: A DFT study." COMPUTATIONAL AND THEORETICAL CHEMISTRY , vol.1242.

@article{article, author={E Vessally Et Al. }, title={Enhanced performance of a promising Au/TMDC heterostructure composed of MoTe2 nanosheets decorated with Au5 clusters: A DFT study}, journal={COMPUTATIONAL AND THEORETICAL CHEMISTRY}, year=2024}