Search Results - "Wang, Jiazhao"
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Understanding the Reaction Chemistry during Charging in Aprotic Lithium–Oxygen Batteries: Existing Problems and Solutions
Published in Advanced materials (Weinheim) (12-04-2019)“…The aprotic lithium–oxygen (Li–O2) battery has excited huge interest due to it having the highest theoretical energy density among the different types of…”
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Boron leaching: Creating vacancy-rich Ni for enhanced hydrogen evolution
Published in Nano research (01-03-2022)“…Creating vacancy is often highly effective in enhancing the hydrogen evolution performance of transition metal-based catalysts. Vacancy-rich Ni nanosheets have…”
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Mo2C/CNT: An Efficient Catalyst for Rechargeable Li–CO2 Batteries
Published in Advanced functional materials (19-07-2017)“…The rechargeable Li–CO2 battery is a novel and promising energy storage system with the capability of CO2 capture due to the reversible reaction between…”
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4
Surface chemistry engineering of layered oxide cathodes for sodium‐ion batteries
Published in Carbon neutralization (Print) (01-09-2022)“…Sodium‐ion batteries (SIBs) have attracted extensive attention to be applied in large‐scale energy storage due to their low cost and abundant storage…”
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SnO2–Graphene Composite Synthesized via an Ultrafast and Environmentally Friendly Microwave Autoclave Method and Its Use as a Superior Anode for Lithium-Ion Batteries
Published in Journal of physical chemistry. C (22-12-2011)“…SnO2–graphene composites have been synthesized by an ultrafast and environmentally friendly microwave autoclave method. From field emission scanning electron…”
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6
Li2S‐Based Li‐Ion Sulfur Batteries: Progress and Prospects
Published in Small (Weinheim an der Bergstrasse, Germany) (01-03-2021)“…The great demand for high‐energy‐density batteries has driven intensive research on the Li–S battery due to its high theoretical energy density. Consequently,…”
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Magnetite/carbon core-shell nanorods as anode materials for lithium-ion batteries
Published in Electrochemistry communications (01-12-2008)“…Carbon coated magnetite (Fe 3O 4) core-shell nanorods were synthesized by a hydrothermal method using Fe 2O 3 nanorods as the precursor. Transmission electron…”
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Large-Scale Exfoliation of Inorganic Layered Compounds in Aqueous Surfactant Solutions
Published in Advanced materials (Weinheim) (08-09-2011)“…A method to exfoliate MoS2 in large quantities in surfactant‐water solutions is described. The layered material tends to be exfoliated as dispersions of thin,…”
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Highly reversible Li-O2 battery induced by modulating local electronic structure via synergistic interfacial interaction between ruthenium nanoparticles and hierarchically porous carbon
Published in Nano energy (01-03-2019)“…The interfacial interaction between catalysts and substrates has been considered as a pivotal factor determining the activities in different applications…”
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10
Lithium storage in commercial MoS2 in different potential ranges
Published in Electrochimica acta (30-10-2012)“…Transition metal sulfides are regarded as another type of high-performance anode materials following the transition metal oxides for lithium ion batteries…”
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Electrochemical performance of α-Fe2O3 nanorods as anode material for lithium-ion cells
Published in Electrochimica acta (15-02-2009)“…alpha-Fe2O3 nanorods were synthesized by a facile hydrothermal method. The as-prepared alpha-Fe2O3 nanorods have a high quality crystalline nanostructure with…”
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12
The value of myocardial contraction fraction and long-axis strain to predict late gadolinium enhancement in multiple myeloma patients with secondary cardiac amyloidosis
Published in Scientific reports (22-07-2024)“…The aim of this study is to assess the effectiveness of conventional and two additional functional markers derived from standard cardiac magnetic resonance…”
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13
Flexible free-standing carbon nanotube films for model lithium-ion batteries
Published in Carbon (New York) (01-11-2009)“…A comparative study of conductive, free-standing, binder-free flexible films made from three different types of commercial carbon nanotubes (CNTs), i.e.,…”
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14
Electrode reactions of manganese oxides for secondary lithium batteries
Published in Electrochemistry communications (01-11-2010)“…Nanorods of MnO 2, Mn 3O 4, Mn 2O 3 and MnO are synthesized by hydrothermal reactions and subsequent annealing. It is shown that though different oxides…”
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Highly Reversible Lithium Storage in Spheroidal Carbon-Coated Silicon Nanocomposites as Anodes for Lithium-Ion Batteries
Published in Angewandte Chemie International Edition (20-10-2006)“…High‐performance cycling: Spray pyrolysis has been used to generate a new type of spheroidal nanosized carbon‐coated silicon composite (see TEM image). This…”
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Preparation of N-doped porous carbon matrix in a solid–liquid coexisted NaCl template and its applications in Li–S batteries
Published in Ionics (2023)“…Li–S batteries have been considered as the most desirable candidate for next-generation batteries because of their high energy density and low cost, although…”
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PdNi Hollow Nanoparticles for Improved Electrocatalytic Oxygen Reduction in Alkaline Environments
Published in ACS applied materials & interfaces (11-12-2013)“…Palladium-nickel (PdNi) hollow nanoparticles were synthesized via a modified galvanic replacement method using Ni nanoparticles as sacrificial templates in an…”
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Flexible, Aligned Carbon Nanotube/Conducting Polymer Electrodes for a Lithium-Ion Battery
Published in Chemistry of materials (24-07-2007)Get full text
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Efficient Polytelluride Anchoring for Ultralong-Life Potassium Storage: Combined Physical Barrier and Chemisorption in Nanogrid-in-Nanofiber
Published in Nano-micro letters (01-12-2024)“…Highlights The hierarchical nanogrid-in-nanofiber-structured dual-type carbon-confined CoTe 2 nanodots (CoTe 2 @NC@NSPCNFs) were synthesized via facile…”
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All-polymer battery system based on polypyrrole (PPy)/para (toluene sulfonic acid) (pTS) and polypyrrole (PPy)/indigo carmine (IC) free standing films
Published in Electrochimica acta (30-11-2012)“…Free-standing PPy–pTS and PPy–IC films were prepared via electropolymerization. The films are porous, mechanically robust, lightweight, and flexible and can be…”
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