Z. Liao Et Al. , "Two-dimensional phthalocyanine-based molecular additives realize efficient hole transport and enhanced ion immobilization for durable perovskite solar cells," Chemical Engineering Journal , vol.492, 2024
Liao, Z. Et Al. 2024. Two-dimensional phthalocyanine-based molecular additives realize efficient hole transport and enhanced ion immobilization for durable perovskite solar cells. Chemical Engineering Journal , vol.492 .
Liao, Z., BIYIKLIOĞLU, Z., Yang, L., Baş, H., Dong, P., Hu, J., ... Deng, J.(2024). Two-dimensional phthalocyanine-based molecular additives realize efficient hole transport and enhanced ion immobilization for durable perovskite solar cells. Chemical Engineering Journal , vol.492.
Liao, Zhihan Et Al. "Two-dimensional phthalocyanine-based molecular additives realize efficient hole transport and enhanced ion immobilization for durable perovskite solar cells," Chemical Engineering Journal , vol.492, 2024
Liao, Zhihan Et Al. "Two-dimensional phthalocyanine-based molecular additives realize efficient hole transport and enhanced ion immobilization for durable perovskite solar cells." Chemical Engineering Journal , vol.492, 2024
Liao, Z. Et Al. (2024) . "Two-dimensional phthalocyanine-based molecular additives realize efficient hole transport and enhanced ion immobilization for durable perovskite solar cells." Chemical Engineering Journal , vol.492.
@article{article, author={Zhihan Liao Et Al. }, title={Two-dimensional phthalocyanine-based molecular additives realize efficient hole transport and enhanced ion immobilization for durable perovskite solar cells}, journal={Chemical Engineering Journal}, year=2024}