Qian Tao

Education & Employment

  • Professor of School of Chemistry and Chemical Engineering, 2021

    Nantong University

  • Associate Professor of College of Energy, 2018-2021

    Soochow University

  • Assistant Professor of College of Energy, 2014-2018

    Soochow University

  • PhD in Chemistry and Physics of Polymers, 2011-2014

    Nanjing University

  • MSc in Applied Chemistry, 2008-2011

    Nanjing Normal University

  • Bachelor in Applied Chemistry, 2004-2008

    Nanjing Normal University

Contact

Email: qiantao@ntu.edu.cn
Office: Room C113, Building 15

Research Interests

Proton-filtering covalent organic frameworks with superior nitrogen penetration flux promote ambient ammonia synthesis. Nature Catalysis
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Salting-out effect promoting highly efficient ambient ammonia synthesis. Nature Communications
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Altering the rate-determining step over cobalt single clusters leading to highly efficient ammonia synthesis. National Science Review
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Lithium anode stable in air for low-cost fabrication of a dendrite-free lithium battery. Nature Communications
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Facilitating nitrogen accessibility to boron-rich covalent organic frameworks via electrochemical excitation for efficient nitrogen fixation. Nature Communications
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Over 56.55% Faradaic efficiency of ambient ammonia synthesis enabled by positively shifting the reaction potential. Nature Communications
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Zinc‐Air Batteries: Facilitated Oxygen Chemisorption in Heteroatom‐Doped Carbon for Improved Oxygen Reaction Activity in All‐Solid‐State Zinc–Air Batteries. Advanced Materials
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Selenium‐Doped Cathodes for Lithium–Organosulfur Batteries with Greatly Improved Volumetric Capacity and Coulombic Efficiency. Advanced Materials
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Accelerating Ion Dynamics Under Cryogenic Conditions by the Amorphization of Crystalline Cathodes Advanced Materials
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All-Liquid-Phase Reaction Mechanism Enabling Cryogenic Li–S Batteries ACS Nano
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Efficient solar domestic and industrial sewage purification via polymer wastewater collector Chemical Engineering Journal
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Healable Lithium Alloy Anode with Ultrahigh Capacity. Nano Letters
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Single lithium-ion channel polymer binder for stabilizing sulfur cathodes. National Science Review
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Boosting Oxygen Dissociation over Bimetal Sites to Facilitate Oxygen Reduction Activity of Zinc‐Air Battery. Advanced Functional Materials
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Rapid leakage responsive and self-healing Li-metal batteries. Chemical Engineering Journal
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Artificial Lithium Isopropyl-Sulfide Macromolecules as an Ion-Selective Interface for Long-Life Lithium–Sulfur Batteries. ACS Applied Materials & Interfaces
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Highly efficient lithium utilization in lithium metal full-cell by simulated missile guidance and confinement systems. Science China Materials
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Insight into the reaction mechanism of sulfur chains adjustable polymer cathode for high-loading lithium-organosulfur batteries. Journal of Energy Chemistry
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Low-temperature Li-S batteries enabled by all amorphous conversion process of organosulfur cathode. Journal of Energy Chemistry
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Ordered lithium ion channels of covalent organic frameworks with lithiophilic groups enable uniform and efficient Li plating/stripping. Journal of Energy Chemistry
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Functional-selected LiF-intercalated-graphene enabling ultra-stable lithium sulfur battery. Journal of Energy Chemistry
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Boosting the Optimization of Lithium Metal Batteries by Molecular Dynamics Simulations: A Perspective. Advanced Energy Materials
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In situ evolved NiMo/NiMoO4 nanorods as a bifunctional catalyst for overall water splitting. Nanotechnology.
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Strongly trapping soluble lithium polysulfides using polar cysteamine groups for highly stable lithium sulfur batteries. Nanotechnology
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Unveiling the Essential Nature of Lewis Basicity in Thermodynamically and Dynamically Promoted Nitrogen Fixation. Advanced Functional Materials
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Single-atom scale metal vacancy engineering in heteroatom-doped carbon for rechargeable zinc-air battery with reduced overpotential. Chemical Engineering Journal
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In Situ/Operando Spectroscopic Characterizations Guide the Compositional and Structural Design of Lithium–Sulfur Batteries. Small Methods
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Enhanced utilization of active sites of Fe/N/C catalysts by pore-in-pore structures for ultrahigh mass activity. Nanotechnology
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In-situ observation as activity descriptor enables rational design of oxygen reduction catalyst for zinc-air battery. Energy Storage Materials
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Lithium dendrite inhibition via 3D porous lithium metal anode accompanied by inherent SEI layer. Energy Storage Materials
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Form-stable phase change materials based on polyolefin elastomer and octadecylamine-functionalized graphene for thermal energy storageNanotechnology
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Atomic Metal Vacancy Modulation of Single-Atom Dispersed Co/N/C for Highly Efficient and Stable Air Cathode. ACS applied materials & interfaces
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Wiping off oxygen bonding to maximize heteroatom-induced improvement in oxygen reaction activity of metal site for high-performance zinc-air battery. Nanotechnology
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Pyridinic and graphitic nitrogen-enriched carbon paper as a highly active bifunctional catalyst for Zn-air batteries Electrochimica Acta
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Toward safer solid-state lithium metal batteries: a review. Nanoscale Advances
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Novel Organophosphate‐Derived Dual‐Layered Interface Enabling Air‐Stable and Dendrite‐Free Lithium Metal Anode. Advanced Materials
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Dendrite–free and Ultra–High energy lithium sulfur battery enabled by dimethyl polysulfide intermediates. Energy Storage Materials
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Super lithiophilic SEI derived from quinones electrolyte to guide Li uniform deposition. Energy Storage Materials
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Identifying the Lewis base chemistry in preventing the deposition of metal oxides on ketone-enriched carbon cathodes for highly durable metal–air batteries. ACS applied materials & interfaces
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A new high ionic conductive gel polymer electrolyte enables highly stable quasi-solid-state lithium sulfur battery. Energy Storage Materials
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Mega high utilization of sodium metal anodes enabled by single zinc atom sites. Nano letters
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Updating the intrinsic activity of a single-atom site with a P–O bond for a rechargeable Zn–air battery. ACS applied materials & interfaces
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Single-atom iron as lithiophilic site to minimize lithium nucleation overpotential for stable lithium metal full battery. ACS applied materials & interfaces
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A new type of electrolyte system to suppress polysulfide dissolution for lithium–sulfur battery. ACS nano
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Selenium-doped carbon nanosheets with strong electron cloud delocalization for nondeposition of metal oxides on air cathode of zinc–air battery. ACS applied materials & interfaces
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High-safety all-solid-state lithium-metal battery with high-ionic-conductivity thermoresponsive solid polymer electrolyte. Nano letters.
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Anion-regulated solid polymer electrolyte enhances the stable deposition of lithium ion for lithium metal batteries. Journal of Power Sources
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Oxidizing Vacancies in Nitrogen‐Doped Carbon Enhance Air‐Cathode Activity. Advanced Materials
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High Coulombic efficiency cathode with nitryl grafted sulfur for Li-S battery. Energy Storage Materials
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In situ optical spectroscopy characterization for optimal design of lithium–sulfur batteries.Chemical Society Reviews
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A functional-gradient-structured ultrahigh modulus solid polymer electrolyte for all-solid-state lithium metal batteries. Journal of Materials Chemistry A
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Stabilizing cathodes of lithium–sulfur batteries by the chemical binding of sulfur and their discharge products to carbon nanofibers. New Journal of Chemistry
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Modulating the d-band center of boron doped single-atom sites to boost the oxygen reduction reaction. Journal of Materials Chemistry A
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Single-cluster Au as an usher for deeply cyclable Li metal anodes. Journal of Materials Chemistry A
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Progress and perspective of organosulfur polymers as cathode materials for advanced lithium-sulfur batteries. Energy Storage Materials
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Bioinspired polysulfiphobic artificial interphase layer on lithium metal anodes for lithium sulfur batteries. ACS applied materials & interfaces
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A new hydrophilic binder enabling strongly anchoring polysulfides for high‐performance sulfur electrodes in lithium‐sulfur battery. Advanced Energy Materials
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High Lithium Ion Conductivity LiF/GO Solid Electrolyte Interphase Inhibiting the Shuttle of Lithium Polysulfides in Long‐Life Li–S Batteries. Advanced Functional Materials
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Facilitated oxygen chemisorption in heteroatom‐doped carbon for improved oxygen reaction activity in all‐solid‐state zinc–air batteries. Advanced Materials
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Stabilized Lithium–Sulfur Batteries by Covalently Binding Sulfur onto the Thiol‐Terminated Polymeric Matrices. Small
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Active Fe-Nx Sites in Carbon Nanosheets as Oxygen Reduction Electrocatalyst for Flexible All-Solid-State Zinc–Air Batteries. Advanced Sustainable Systems
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Confined silicon nanospheres by biomass lignin for stable lithium ion battery. Nanotechnology
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Porous yolk–shell microspheres as N–doped carbon matrix for motivating the oxygen reduction activity of oxygen evolution oriented materials. Nanotechnology
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Molecularly imprinted polymer enables high-efficiency recognition and trapping lithium polysulfides for stable lithium sulfur battery. Nano letters
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Unprecedented activity of bifunctional electrocatalyst for high power density aqueous zinc–air batteries. ACS applied materials & interfaces
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A new type of multifunctional polar binder: toward practical application of high energy lithium sulfur batteries. Advanced materials
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An efficient bifunctional electrocatalyst for a zinc–air battery derived from Fe/N/C and bimetallic metal–organic framework composites. ACS applied materials & interfaces
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Greatly suppressed shuttle effect for improved lithium sulfur battery performance through short chain intermediates. Nano letters
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Stationary Full Li-Ion Batteries with Interlayer-Expanded V6O13 Cathodes and Lithiated Graphite Anodes. Electrochimica Acta
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Core–Shell coating silicon anode interfaces with coordination complex for stable Lithium-ion batteries. ACS applied materials & interfaces
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Half and full sodium-ion batteries based on maize with high-loading density and long-cycle life. Nanoscale
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A sustainable route from biomass byproduct okara to high content nitrogen‐doped carbon sheets for efficient sodium ion batteries. Advanced materials
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Highly Flexible Full Lithium Batteries with Self-Knitted α-MnO2 Fabric Foam.
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On-chip supercapacitors with ultrahigh volumetric performance based on electrochemically co-deposited CuO/polypyrrole nanosheet arrays. Nanotechnology
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Supercapacitors based on highly dispersed polypyrrole-reduced graphene oxide composite with a folded surface Applied Physics A
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Dopamine fluorescent sensors based on polypyrrole/graphene quantum dots core/shell hybrids. Biosensors and Bioelectronics
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A new approach towards the synthesis of nitrogen-doped graphene/MnO2 hybrids for ultralong cycle-life lithium ion batteriesJournal of Materials Chemistry A
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Nanomeshes of highly crystalline nitrogen-doped carbon encapsulated Fe/Fe 3 C electrodes as ultrafast and stable anodes for Li-ion batteries.Journal of Materials Chemistry A
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Interconnected three-dimensional V2O5/polypyrrole network nanostructures for high performance solid-state supercapacitors. Journal of Materials Chemistry A
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All-solid-state flexible supercapacitors based on highly dispersed polypyrrole nanowire and reduced graphene oxide composites. ACS applied materials & interfaces
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Ultrasensitive dopamine sensor based on novel molecularly imprinted polypyrrole coated carbon nanotubes. Biosensors and Bioelectronics
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Au nanoparticles decorated polypyrrole/reduced graphene oxide hybrid sheets for ultrasensitive dopamine detection. Sensors and Actuators B: Chemical
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Highly dispersed carbon nanotube/polypyrrole core/shell composites with improved electrochemical capacitive performanceJournal of Materials Chemistry A
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