动力电池绿色制造 安徽省重点实验室

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重点实验室论文清单

实验室署名论文:

1、High-performance bifunctional Ni-Fe-S catalyst in situ synthesized within graphite intergranular nanopores for overall water splitting

2、The Central Role of Nitrogen Atoms in a Zeolitic Imidazolate Framework-Derived Catalyst for Cathodic Hydrogen Evolution

3、Graphite defect network constitutes a robust and polishable matrix:Ultralow catalyst loading and excellent electrocatalytic performance

4、Trace Fe Incorporation into Ni-(oxy)hydroxide Stabilizes Ni3+ Sites for Anodic Oxygen Evolution: A Double Thin-Layer Study

5、Bipolar electrodeposition of gradient polypyrrole films as a catalyst matrix for anodic ethanol oxidation

6、Yolk-shell ZIF-8@ZIF-67 derived Co3O4@NiCo2O4 catalysts with effective electrochemical properties for Li-O2 batteries

7、Two-Dimensional Boron and Nitrogen Dual-Doped Graphitic Carbon as an Efficient Metal-Free Cathodic Electrocatalyst for Lithium-Air Batteries

8、Cobalt-imidazole metal-organic framework loaded with luminol for paper-based chemiluminescence detection of catechol with use of a smartphone

9、One-step hydrothermal synthesis of reduced graphene oxide/carbon nanotubes/hydroquinone hydrogel and its electrochemical properties

10、Boron doping and structure control of carbon materials for supercapacitor application: the effect of freeze-drying and air-drying for porosity engineering

11、An alternative electrolyte of deep eutectic solvent by choline chloride and ethylene glycol for wide temperature range supercapacitors

12、A novel electrolyte of ternary deep eutectic solvent for wide temperature region supercapacitor with superior performance

13、Design and synthesis of highly N, S co-doped 3D carbon materials with tunable porosity for supercapacitors

14、Integrating Effect of Surface Modification of Microporous Carbon by Phosphorus/Oxygen as well as the Redox Additive of p-Aminophenol for High-Performance Supercapacitors

15、Sulfur modification of carbon materials as well as the redox additive of Na2S for largely improving capacitive performance of supercapacitors

16、Surface modification of carbon materials by nitrogen/phosphorus co-doping as well as redox additive of ferrous ion for cooperatively boosting the performance of supercapacitors

17、Low-temperature and pressure-promoted synthesis of porous carbon modified with oxygen for supercapacitor application

18、Low temperature and highly efficient oxygen/sulfur dual-modification of nanoporous carbon under hydrothermal conditions for supercapacitor application

19、Carbon nanofibers derived from bacterial cellulose: Surface modification by polydopamine and the use of ferrous ion as electrolyte additive for collaboratively increasing the supercapacitor performance

20、Highly boosting the supercapacitor performance by polydopamine-induced surface modification of carbon materials and use of hydroquinone as an electrolyte additive