TY - JOUR
T1 - Recent advancements in metal oxides for energy storage materials
T2 - Design, classification, and electrodes configuration of supercapacitor
AU - Shaheen, Irum
AU - Hussain, Iftikhar
AU - Zahra, Taghazal
AU - Javed, Muhammad Sufyan
AU - Shah, Syed Shoaib Ahmad
AU - Khan, Karim
AU - Hanif, Muhammad Bilal
AU - Assiri, Mohammed A.
AU - Said, Zafar
AU - Arifeen, Waqas Ul
AU - Akkinepally, Bhargav
AU - Zhang, Kaili
N1 - Publisher Copyright:
© 2023
PY - 2023/11/30
Y1 - 2023/11/30
N2 - Among different energy storage devices, supercapacitors have garnered the attention due to their higher charge storage capacity, superior charging-discharging performance, higher power density, and long cycle life. Subsequently, introducing low-cost and highly-efficient supercapacitors is a hot topic in the industrial and scientific realms. Metal oxides are considered as the most suitable electrode materials due to their intrinsic properties, economic attractiveness, environmental friendliness, and abundant availability. However, there is still a salient need to have e comprehensive study of the significance of metal oxide nanomaterials for supercapacitors in relation to their sustainable synthesis approaches. Thus, this review delineated the different sustainable synthesis approaches for metal oxide nanomaterials following their morphological, compositional, and supercapacitive properties. Initially, the review covers designs or configurations of supercapacitors followed by the types of supercapacitors based on electrode materials. Further, metal oxides-based pseudocapacitive-/battery-type electrodes have been articulated comprehensively. Moreover, this review aims to provide sustainable fabrication of metal oxide nanomaterial-based supercapacitors with a superior interpretation of the design and functioning of the device that could serve as guidelines for new synthesis and fabrication approaches to develop sustainable supercapacitors for practical applications.
AB - Among different energy storage devices, supercapacitors have garnered the attention due to their higher charge storage capacity, superior charging-discharging performance, higher power density, and long cycle life. Subsequently, introducing low-cost and highly-efficient supercapacitors is a hot topic in the industrial and scientific realms. Metal oxides are considered as the most suitable electrode materials due to their intrinsic properties, economic attractiveness, environmental friendliness, and abundant availability. However, there is still a salient need to have e comprehensive study of the significance of metal oxide nanomaterials for supercapacitors in relation to their sustainable synthesis approaches. Thus, this review delineated the different sustainable synthesis approaches for metal oxide nanomaterials following their morphological, compositional, and supercapacitive properties. Initially, the review covers designs or configurations of supercapacitors followed by the types of supercapacitors based on electrode materials. Further, metal oxides-based pseudocapacitive-/battery-type electrodes have been articulated comprehensively. Moreover, this review aims to provide sustainable fabrication of metal oxide nanomaterial-based supercapacitors with a superior interpretation of the design and functioning of the device that could serve as guidelines for new synthesis and fabrication approaches to develop sustainable supercapacitors for practical applications.
KW - Advanced nanomaterials
KW - Economic supercapacitor
KW - Energy storage
KW - Metal oxides
KW - Sustainable synthesis
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U2 - 10.1016/j.est.2023.108719
DO - 10.1016/j.est.2023.108719
M3 - Review article
AN - SCOPUS:85168162235
SN - 2352-152X
VL - 72
JO - Journal of Energy Storage
JF - Journal of Energy Storage
M1 - 108719
ER -