DAS, PS BAKULI, S BISWAS, I MALLIK, AK DEY, A MUKHERJEE, S GHOSH, J MUKHOPADHYAY, AK
A scalable, cost effective synthesis of reduced graphene oxide (RGO)-magnesium oxide (Mg0) hybrid nano composite (RGOMOHNC) is reported in the present work. The process involves an in-situ sonication method in aqueous medium at room temperature e.g., 30 degrees C. The as synthesized graphene oxide (GO) and RGOMOHNC powders are characterized by the ...
BHARDWAJ, HS RAMIREDDY, T PRADEEP, A JANGID, MK SRIHARI, V POSWAL, HK MUKHOPADHYAY, A
Despite being a promising anode material for the Na-ion battery system, Na-titanate (viz., Na2Ti3O7) lacks in terms of cyclic stability; the cause(s) for which are under debate. Against this backdrop, through electrochemical measurements and insitu synchrotron X-ray diffraction studies, the present work develops insights into the aspects concerning...
Jiao, Yuzhi Zhang, Haitao Zhang, Hailang Liu, Ao Liu, Yanxia Zhang, Suojiang
T-Nb2O5/reduced graphene oxide nanohybrids were fabricated via the hydrothermal attachment of Nb2O5 nanowires to dispersed graphene oxide nanosheets followed by a high-temperature phase transformation. Electrochemical measurements showed that the nanohybrid anodes possessed enhanced reversible capacity and superior cycling stability compared to tho...
Lee, Sang Ho Noh, Yuseong Jo, Yong-Ryun Kim, Yoongon Kim, Bong-Joong Kim, Won Bae
A designed electrode material of carbon-encapsulated tin dioxide core-shell nanowires that are synthesized directly on reduced graphene oxide substrates is reported, and its application as a positive electrode material for lithium-ion battery is shown. Each of the individual tin dioxide nanowires is wrapped with carbon shell layers and grown on a r...
Fang, Daliang Chen, Shimou Wang, Xi Bando, Yoshio Golberg, Dmitri Zhang, Suojiang
Nowadays, much progress has been made in designing practical high-energy-density anode materials for lithium-ion batteries (LIBs). However, during repeated charge-discharge cycles, high-energy-density anode materials usually undergo large volume changes, which results in a limited cycle life. The situation is worse when anode materials have high ta...
Kumar, S. Rajesh Kim, Jong Guk viswanathan., c. Kim, Won Bae Selvan, R. Kalai ponpandian., n.
One-pot solvothermal process is adopted to develop, 3D hierarchical Fe3O4 nanoparticles supported 2D reduced graphene oxide sheets (Fe3O4/r-GO) as possible negative electrodes for lithium ion batteries. The synthesis parameters are optimized to prepare agglomeration-free Fe3O4 nanostructures with uniform size and shape on r- GO. The field emission ...
Chen, Jiayuan Wu, Xiaofeng Liu, Ya Gong, Yan Wang, Pengfei Li, Wenhui Mo, Shengpeng Tan, Qiangqiang Chen, Yunfa
A facile template-free synthesis strategy is demonstrated to fabricate nanostructured NiO/N-doped graphene hybrid, in which NiO hollow nanospheres with hierarchically mesoporous structure are tightly anchored on N-doped graphene matrix. The mesoporous shell of NiO can not only provide sufficient electrode/electrolyte contact areas to accelerate io...
Zhang, Lan Zhang, Kaihang Shi, Zhaohui Zhang, Suojiang
Li4Ti6O12 (LTO) is a promising anode Material for electric vehicles (EVs) and electrochemical energy storage applications because of its safety, good rate capability, and long cycle life. At elevated temperature, such as 60 degrees C, it always shows poor cycle performance because of the instability between the electrode material and electrolyte, ...
Jin, Xiaoyan Lim, Joohyun Ha, Yoonhoo Kwon, Nam Hee Shin, Hyeyoung Kim, In Young Lee, Nam-Suk Kim, Myung Hwa Kim, Hyungjun Hwang, Seong-Ju
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The effect of the catalyst morphology on the growth of carbon nanotubes (CNT) on nanostructured transition metal oxides was investigated to study a novel low-temperature synthetic route to functional CNT-transition metal oxide nanocomposites. Among several nanostructured manganese oxides with various morphologies and structures, only exfoliated 2D ...
KWON, OHHUN SENGODAN, SIVAPRAKASH KIM, KYEOUNGHAK KIM, GIHYEON JEONG, HU YOUNG SHIN, JEEYOUNG JU, YOUNG-WAN HAN, JEONG WOO KIM, GUNTAE
In perovskites, exsolution of transition metals has been proposed as a smart catalyst design for energy applications. Although there exist transition metals with superior catalytic activity, they are limited by their ability to exsolve under a reducing environment. When a doping element is present in the perovskite, it is often observed that the su...