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Ultrathin 2D inorganic nanomaterials are good candidates for lithium‐ion batteries, as well as the micro/nanocage structures with unique and tunable morphologies. Meanwhile, as a cost‐effective method, chemical doping plays a vital role in manipulating physical and chemical properties of metal oxides and sulfides. Thus, the design of ultrathin, hollow, and chemical doped metal sulfides shows great...
In article number 1605784, Huan Pang and co‐workers from Yangzhou University report a mild and facile synthesis of nickel‐cobalt phosphate 2D nanosheets. The growth of as‐prepared materials is investigated while varying the Ni/Co ratio, solvent quantity, surface active agent, reaction temperature, and reaction time. In addition, an aqueous electrochemical energy storage device and a solid‐state flexible...
2D materials are ideal for constructing flexible electrochemical energy storage devices due to their great advantages of flexibility, thinness, and transparency. Here, a simple one‐step hydrothermal process is proposed for the synthesis of nickel–cobalt phosphate 2D nanosheets, and the structural influence on the pseudocapacitive performance of the obtained nickel–cobalt phosphate is investigated...
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