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Recent progress of electrode materials for flexible perovskite solar cells
Flexible perovskite solar cells (FPSCs) have attracted enormous interest in wearable and
portable electronics due to their high power-per-weight and low cost. Flexible and efficient …
portable electronics due to their high power-per-weight and low cost. Flexible and efficient …
Solution-processed two-dimensional materials for next-generation photovoltaics
In the ever-increasing energy demand scenario, the development of novel photovoltaic (PV)
technologies is considered to be one of the key solutions to fulfil the energy request. In this …
technologies is considered to be one of the key solutions to fulfil the energy request. In this …
Recent advances in ultrathin two-dimensional nanomaterials
Since the discovery of mechanically exfoliated graphene in 2004, research on ultrathin two-
dimensional (2D) nanomaterials has grown exponentially in the fields of condensed matter …
dimensional (2D) nanomaterials has grown exponentially in the fields of condensed matter …
Progress, challenges, and perspectives on polymer substrates for emerging flexible solar cells: A holistic panoramic review
In pursuit of a renewable, inexpensive, sustainable, and compact energy source to replace
fossil fuels, solar photovoltaic devices have become an ideal alternative to meet human …
fossil fuels, solar photovoltaic devices have become an ideal alternative to meet human …
Boron-doped graphene quantum dot/bismuth molybdate composite photocatalysts for efficient photocatalytic nitrogen fixation reactions
Z Liu, M Luo, S Yuan, L Meng, W Ding, S Su… - Journal of Colloid and …, 2023 - Elsevier
Bismuth molybdate (BMO) is a promising visible-driven photocatalyst and constructing
heterojunctions in BMO-based materials is an effective way to enhance photocatalytic …
heterojunctions in BMO-based materials is an effective way to enhance photocatalytic …
Carbon nanomaterials for electronics, optoelectronics, photovoltaics, and sensing
In the last three decades, zero-dimensional, one-dimensional, and two-dimensional carbon
nanomaterials (ie, fullerenes, carbon nanotubes, and graphene, respectively) have attracted …
nanomaterials (ie, fullerenes, carbon nanotubes, and graphene, respectively) have attracted …
Ultratransparent and stretchable graphene electrodes
Two-dimensional materials, such as graphene, are attractive for both conventional
semiconductor applications and nascent applications in flexible electronics. However, the …
semiconductor applications and nascent applications in flexible electronics. However, the …
Interfacial interactions and synergistic effect of CoNi nanocrystals and nitrogen-doped graphene in a composite microwave absorber
J Feng, F Pu, Z Li, X Li, X Hu, J Bai - Carbon, 2016 - Elsevier
We reported a facile one-pot polyol route for the fabrication of CoNi/nitrogen-doped
graphene hybrids as synergistic microwave absorber. Microstructure investigations suggest …
graphene hybrids as synergistic microwave absorber. Microstructure investigations suggest …
One-pot synthesis of CoFe 2 O 4/graphene oxide hybrids and their conversion into FeCo/graphene hybrids for lightweight and highly efficient microwave absorber
CoFe2O4/graphene oxide hybrids have been successfully fabricated via a facile one-pot
polyol route, followed by chemical conversion into FeCo/graphene hybrids under H2/NH3 …
polyol route, followed by chemical conversion into FeCo/graphene hybrids under H2/NH3 …
Graphene: an emerging electronic material
Graphene, a single layer of carbon atoms in a honeycomb lattice, offers a number of
fundamentally superior qualities that make it a promising material for a wide range of …
fundamentally superior qualities that make it a promising material for a wide range of …