Publicaciones (111) Publicaciones de Samrana Kazim

2023

  1. Amplifying the Performance and Stability of Perovskite Solar Cells Using Fluorinated Salt as the Surface Passivator

    Energy Technology, Vol. 11, Núm. 1

  2. Fluorinated- and non-fluorinated-diarylamine-Zn(ii) and Cu(ii) phthalocyanines as symmetrical vs. asymmetrical hole selective materials

    Journal of Materials Chemistry C, Vol. 11, Núm. 24, pp. 8243-8253

  3. Interface tweaking of perovskite solar cells with carbon nitride-based 2D materials

    Nano Energy, Vol. 109

  4. Lead-sulfur interaction induced damp and water stability in pure formamidinium lead triiodide

    Cell Reports Physical Science, Vol. 4, Núm. 8

  5. Low Switching Power Neuromorphic Perovskite Devices with Quick Relearning Functionality

    Advanced Electronic Materials, Vol. 9, Núm. 8

  6. Molecular Tailoring of Pyridine Core-Based Hole Selective Layer for Lead Free Double Perovskite Solar Cells Fabrication

    ACS Applied Energy Materials, Vol. 6, Núm. 15, pp. 7955-7964

  7. Overcoming Limitations in Water-Ethanol Sprayed Superstrate Solar Cells by Compositional Engineering of Cu2CdSn(S,Se)4

    ACS Applied Materials and Interfaces, Vol. 15, Núm. 21, pp. 25684-25692

  8. Performance and Degradation in Silicon PV Systems Under Outdoor Conditions in Relation to Reliability Aspects of Silicon PV Modules - Summary of Results of COST Action PEARL PV

    Conference Record of the IEEE Photovoltaic Specialists Conference

  9. Probing proton diffusion as a guide to environmental stability in powder-engineered FAPbI3 and CsFAPbI3 perovskites

    Cell Reports Physical Science, Vol. 4, Núm. 3

  10. Uncovering the Role of Electronic Doping in Lead-free Perovskite (CH3NH3)2CuCl4-xBrx and Solar Cells Fabrication

    ChemSusChem, Vol. 16, Núm. 11

2022

  1. Advances in 4D Printing of Shape-Memory Materials: Current Status and Developments

    Shape Memory Composites Based on Polymers and Metals for 4D Printing: Processes, Applications and Challenges (Springer International Publishing), pp. 1-27

  2. Automated Machine Learning Approach in Material Discovery of Hole Selective Layers for Perovskite Solar Cells

    Energy Technology

  3. Dimers of diethynyl-conjugated zinc-phthalocyanine as hole selective layers for perovskite solar cell fabrication

    Journal of Materials Chemistry C, Vol. 10, Núm. 33, pp. 11975-11982

  4. Erratum: The impact of fluorine atoms on a triphenylamine-based dopant-free hole-selective layer for perovskite solar cells (J. Mater. Chem. C (2022) 10 (476–484) DOI: 10.1039/D1TC04972K)

    Journal of Materials Chemistry C

  5. Impact of Polymeric Hole-Selective Layers on Chemical Inductance in Inverted Perovskite Solar Cells

    Energy Technology, Vol. 10, Núm. 11

  6. Interface engineering of a hole-transport layer/perovskite with low-band-gap 2D-carbon nitrides for solar cell fabrication

    Sustainable Energy and Fuels, Vol. 7, Núm. 3, pp. 763-768

  7. Leverage of Pyridine Isomer on Phenothiazine Core: Organic Semiconductors as Selective Layers in Perovskite Solar Cells

    ACS Applied Materials and Interfaces, Vol. 14, Núm. 4, pp. 5729-5739

  8. Microstrain and Urbach Energy Relaxation in FAPbI3-Based Solar Cells through Powder Engineering and Perfluoroalkyl Phosphate Ionic Liquid Additives

    ACS Applied Materials and Interfaces, Vol. 14, Núm. 21, pp. 24546-24556