3 results match your criteria: "Institute of Chemical Materials (ICM)[Affiliation]"

As the fourth full-nitrogen structure, the pentazolate anion (cyclo-N ) was highly coveted for decades. In 2017, the first air-stable non-metal pentazolate salt, (N ) (H O) (NH ) Cl, was obtained, representing a milestone in this field. As the latest member of the azole family, cyclo-N is comprised of five nitrogen atoms.

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Aqueous rechargeable zinc-metal-based batteries are an attractive alternative to lithium-ion batteries for grid-scale energy-storage systems because of their high specific capacity, low cost, eco-friendliness, and nonflammability. However, uncontrollable zinc dendrite growth limits the cycle life by piercing the separator, resulting in low zinc utilization in both alkaline and mild/neutral electrolytes. Herein, a polyacrylonitrile coating layer on a zinc anode produced by a simple drop coating approach to address the dendrite issue is reported.

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Nonporous Gel Electrolytes Enable Long Cycling at High Current Density for Lithium-Metal Anodes.

ACS Appl Mater Interfaces

March 2021

State Key Laboratory of Materials-Oriented Chemical Engineering, Institute of Advanced Materials (IAM) and School of Energy Science and Engineering, Nanjing Tech University, Nanjing 211816, China.

Lithium-metal anodes with high theoretical capacity and ultralow redox potential are regarded as a "holy grail" of the next-generation energy-storage industry. Nevertheless, Li inevitably reacts with conventional liquid electrolytes, resulting in uneven electrodeposition, unstable solid electrolyte interphase, and Li dendrite formation that all together lead to a decrease in active lithium, poor battery performance, and catastrophic safety hazards. Here, we report a unique nonporous gel polymer electrolyte (NP-GPE) with a uniform and dense structure, exhibiting an excellent combination of mechanical strength, thermal stability, and high ionic conductivity.

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