Options
Manu Jaiswal
Loading...
Preferred name
Manu Jaiswal
Official Name
Manu Jaiswal
Alternative Name
Jaiswal, Manu
Jaiswal, M.
Main Affiliation
ORCID
Scopus Author ID
Researcher ID
Google Scholar ID
2 results
Now showing 1 - 2 of 2
- PublicationGraphene: Polymer composites as moisture barrier and charge transport layer toward solar cell applications(08-05-2018)
;Sakorikar, Tushar ;Kavitha, M. K. ;Tong, Shi Wun; ;Loh, Kian PingGraphene: polymer composite based electrically conducting films are realized by a facile solution processable method. Ultraviolet Photoelectron Spectroscopy (UPS) measurements on the composite films, reveal a low work function of reduced graphene oxide (rGO) obtained from hydrazine hydrate reduction of graphene oxide (GO). We suggest that the low work function could potentially make rGO: PMMA composite suitable for electron conducting layer in perovskite solar cells in place of traditionally used expensive PCBM ([6,6]-phenyl-C61-butyric acid methyl ester) layer. Further, we demonstrate from the gravimetric experiments conducted on rGO: PMMA films, that the same coating is also resistant to moisture permeation. This latter property can be used to realize a protective coating layer for perovskite films, which are prone to moisture induced degradation. Thus, dual functionality of rGO-PMMA films is demonstrated towards integration with perovskite solar cells. Architecture of perovskite solar cell based on these concepts is proposed. - PublicationGraphene interfaced perovskite solar cells: Role of graphene flake size(10-04-2018)
;Sakorikar, Tushar ;Kavitha, M. K. ;Tong, Shi Wun; ;Loh, Kian PingGraphene interfaced inverted planar heterojunction perovskite solar cells are fabricated by facile solution method and studied its potential as hole conducting layer. Reduced graphene oxide (rGO) with small and large flake size and Polyethylenedioxythiophene:polystyrene sulfonate (PEDOT:PSS) are utilized as hole conducting layers in different devices. For the solar cell employing PEDOT:PSS as hole conducting layer, 3.8 % photoconversion efficiency is achieved. In case of solar cells fabricated with rGO as hole conducting layer, the efficiency of the device is strongly dependent on flake size. With all other fabrication conditions kept constant, the efficiency of graphene-interfaced solar cell improves by a factor of 6, by changing the flake size of graphene oxide. We attribute this effect to uniform coverage of graphene layer and improved electrical percolation network.