The lead halide perovskites have emerged as promising materials with intriguing photo-physical properties and have immense potential for photovoltaic applications. A comprehensive study on the kinetics of charge carrier (electron/hole) generation and transfer across the interface is key to realizing their future scope for efficient device engineering. Herein, we investigate the interfacial charge transfer (CT) dynamics in cesium lead halide (CsPbBr3) perovskite quantum dots (PQDs) with energetically favorable electron acceptors, anthraquinone (AQ) and p-benzoquinone (BQ), and hole acceptors such as pyrene and 4-(dimethylamino)pyridine (DMAP). With various steady-state and time-resolved spectroscopic and microscopic measurements, a faster electron transfer rate is estimated for CsPbBr3 PQDs with BQ compared to that of AQ, while a superior hole transfer for DMAP is divulged compared to pyrene. In concurrence with the spectroscopic measurements, conducting atomic force microscopic studies across the electrode-PQD-electrode junction reveals an increment in the conductance of the PQD in the presence of both the electron and hole acceptors. The variation of the density of states calculation in the presence of the hole acceptors offers strong support and validation for faster CT efficiency. The above findings suggest that a careful selection of simple yet efficient molecular arrangements can facilitate rapid carrier transfer, which can be designed as auxiliary layers for smooth CT and help in the engineering of cost-effective photovoltaic devices.
Skip Nav Destination
Article navigation
14 November 2023
Research Article|
November 09 2023
Modulation of carrier conduction in CsPbBr3 perovskite quantum dots with band-aligned electron and hole acceptors Available to Purchase
Special Collection:
The Physical Chemistry of Solar Fuels Catalysis
Aradhana Panigrahi
;
Aradhana Panigrahi
(Conceptualization, Data curation, Formal analysis, Methodology, Visualization, Writing – original draft)
Department of Physics, Indian Institute of Technology
, Patna 801106, India
Search for other works by this author on:
Ajay Kumar
;
Ajay Kumar
(Data curation, Formal analysis, Software, Writing – original draft)
Department of Physics, Indian Institute of Technology
, Patna 801106, India
Search for other works by this author on:
Leepsa Mishra
;
Leepsa Mishra
(Conceptualization, Investigation, Methodology, Writing – original draft)
Department of Physics, Indian Institute of Technology
, Patna 801106, India
Search for other works by this author on:
Priyanka Dubey
;
Priyanka Dubey
(Investigation, Methodology, Writing – review & editing)
Department of Physics, Indian Institute of Technology
, Patna 801106, India
Search for other works by this author on:
Soumi Dutta
;
Soumi Dutta
(Investigation, Methodology, Writing – review & editing)
Department of Physics, Indian Institute of Technology
, Patna 801106, India
Search for other works by this author on:
Prakash Parida
;
Prakash Parida
(Methodology, Software, Supervision, Writing – review & editing)
Department of Physics, Indian Institute of Technology
, Patna 801106, India
Search for other works by this author on:
Manas Kumar Sarangi
Manas Kumar Sarangi
a)
(Conceptualization, Funding acquisition, Methodology, Supervision, Writing – review & editing)
Department of Physics, Indian Institute of Technology
, Patna 801106, India
a)Author to whom correspondence should be addressed: [email protected]
Search for other works by this author on:
Aradhana Panigrahi
Conceptualization, Data curation, Formal analysis, Methodology, Visualization, Writing – original draft
Department of Physics, Indian Institute of Technology
, Patna 801106, India
Ajay Kumar
Data curation, Formal analysis, Software, Writing – original draft
Department of Physics, Indian Institute of Technology
, Patna 801106, India
Leepsa Mishra
Conceptualization, Investigation, Methodology, Writing – original draft
Department of Physics, Indian Institute of Technology
, Patna 801106, India
Priyanka Dubey
Investigation, Methodology, Writing – review & editing
Department of Physics, Indian Institute of Technology
, Patna 801106, India
Soumi Dutta
Investigation, Methodology, Writing – review & editing
Department of Physics, Indian Institute of Technology
, Patna 801106, India
Prakash Parida
Methodology, Software, Supervision, Writing – review & editing
Department of Physics, Indian Institute of Technology
, Patna 801106, India
Manas Kumar Sarangi
Conceptualization, Funding acquisition, Methodology, Supervision, Writing – review & editing
a)
Department of Physics, Indian Institute of Technology
, Patna 801106, India
a)Author to whom correspondence should be addressed: [email protected]
J. Chem. Phys. 159, 184704 (2023)
Article history
Received:
August 29 2023
Accepted:
October 23 2023
Citation
Aradhana Panigrahi, Ajay Kumar, Leepsa Mishra, Priyanka Dubey, Soumi Dutta, Prakash Parida, Manas Kumar Sarangi; Modulation of carrier conduction in CsPbBr3 perovskite quantum dots with band-aligned electron and hole acceptors. J. Chem. Phys. 14 November 2023; 159 (18): 184704. https://doi.org/10.1063/5.0174262
Download citation file:
Pay-Per-View Access
$40.00
Sign In
You could not be signed in. Please check your credentials and make sure you have an active account and try again.
Citing articles via
CREST—A program for the exploration of low-energy molecular chemical space
Philipp Pracht, Stefan Grimme, et al.
DeePMD-kit v2: A software package for deep potential models
Jinzhe Zeng, Duo Zhang, et al.
Related Content
Photogenerated carrier dynamics of Mn2+ doped CsPbBr3 assembled with TiO2 systems: Effect of Mn doping content
J. Chem. Phys. (April 2024)
The surface chemistry of ionic liquid-treated CsPbBr3 quantum dots
J. Chem. Phys. (May 2023)
Observing strongly confined multiexcitons in bulk-like CsPbBr3 nanocrystals
J. Chem. Phys. (April 2023)
Unraveling the ultrafast charge transfer dynamics in CsPbBr3/Sb2Se3 nanocomposite
AIP Conf. Proc. (January 2025)
Manipulation of hot-carrier cooling dynamics in CsPbBr3 quantum dots via site-selective ligand engineering
J. Chem. Phys. (December 2023)