- Glass properties and applications
- Advanced battery technologies research
- Thin-Film Transistor Technologies
- Electrocatalysts for Energy Conversion
- Supercapacitor Materials and Fabrication
- Advanced Sensor and Energy Harvesting Materials
- Silicon and Solar Cell Technologies
- Material Dynamics and Properties
- Semiconductor materials and interfaces
- Luminescence Properties of Advanced Materials
- Pigment Synthesis and Properties
- Textile materials and evaluations
- Surface Roughness and Optical Measurements
- Nanomaterials and Printing Technologies
- Solar-Powered Water Purification Methods
- Phase-change materials and chalcogenides
- Advanced oxidation water treatment
- Ga2O3 and related materials
- Graphene research and applications
- Software Testing and Debugging Techniques
- Recycling and utilization of industrial and municipal waste in materials production
- Fuel Cells and Related Materials
- Flame retardant materials and properties
- Advanced ceramic materials synthesis
- Ionic liquids properties and applications
University of Chinese Academy of Sciences
2008-2025
Institute of Engineering Thermophysics
2025
Chinese Academy of Sciences
2025
South China University of Technology
2019-2024
Carleton University
2005
Abstract Developing low‐cost, durable, and highly‐active bifunctional electrocatalysts from sustainable biomass for oxygen reduction reaction (ORR) evolution (OER) remains a formidable challenge. Here, novel approach is demonstrated fabricating porous biochar‐derived nanocellulose‐cornstalks aerogel by engineering of synergetic N, B, F incorporation. Nanocellulose used to disperse the carbonous cornstalks as sufficiently nanostructured template, enabling facile incorporation strengthen...
To investigate the combustion and emission characteristics of a 20 MW gas turbine combustor following fuel replacement, this study employs numerical simulations to systematically compare performance methanol methane. The focus is on influence mechanism distribution ratio NOx emissions. As preliminary investigation, aims provide theoretical guidance for subsequent experimental research, with results serving define measurement points in design. It found that value from 40–78% methane under all...
Aramid fibers exhibit impressive mechanical properties, electrical insulation and chemical stability. However, physical properties of the aramid paper are poor because inertness smooth surface fibers. This study reports a simple efficient method for substantially improving performance para-aramid/meta-aramid composite by introducing N,N-dimethylacetamide (DMAc)/LiCl solution to induce partial dissolution or adding DMAc/LiCl/para-aramid regeneration. Experimental results state that tensile...
P-doped graphitic carbon nitride tubes (P-CNTS) with different P concentrations were successfully fabricated via a pre-hydrothermal in combination calcination process under nitrogen atmosphere. The as-prepared samples exhibited excellent photocatalytic performance hydrogen production rate (HPR) of 2749.3 μmol g-1 h-1, which was 17.5 and 6.6 times higher than that the bulk (CNB) tube (CNT). structural textural properties P-CNT well-investigated series characterization methods. Compared...
The conversion of ubiquitous hygrothermal resources into renewable energy offers significant potential for cable-free, self-powered systems that can operate worldwide without regard to climatic or geographic limitations. Here, an all-printed flexible hygro-thermoelectric paper generator is demonstrated uses bifunctional mobile ions and electrons make the moist-diffusion effect, Soret Seebeck effect work synergistically. In ordinary settings, it generates unconventional output pattern shows...
Abstract By the substitution of Al 2 O 3 and B for SiO glass network former, structural thermal, visco‐elastic physical properties aluminosilicate were investigated. 27 NMR results showed that in structure system, 3+ basically existed form 4‐coordinated [AlO 4 ] tetrahedron as former. Judged by Raman spectra, bridging vibration Si‐O b increased with /SiO substitute. And total non‐bridging nb decreased, indicating enhancement compactness. While substitute, at around 1010 cm −1 Q unit both...
Abstract Bifunctional oxygen reduction/oxidation reaction (ORR/OER) electrocatalysts derived from biomass are one of the most valuable materials in terms sustainability, ecological economy and industrial manufacturing, emerging as a desired alternative to commercial Pt/C IrO 2 catalysts. This work demonstrates processing agricultural cornstalk waste cornstalks into stable bifunctional ORR/OER catalysts with high‐performance by simple cost‐effective strategy. Rich hydrophilic active groups...
Here we report a simple efficient one-step strategy to fabricate Oxidation Reduction Reaction (ORR) or/and Oxygen Evolution (OER) electrocatalysts directly from agricultural cornstalks waste with hierarchical porous structures and massive active hydroxyl groups. CaCl2 NH4Cl activators were utilized corrode the in order create mesopore N-doped hybrid structure that was sufficiently stable under high-temperature pyrolysis process, which prevented neighboring aggregates of transition metals....
Among the many environmental problems affecting human health and safety, air water pollution affect millions of people globally. H2O2 is a clean oxidant for production hydroxyl radicals (OH⋅) that decomposes nearly all organic pollutants. However, electro-Fenton (EF) strategies producing are still unsatisfactory because intermittent production, negative decomposition, wide use pure O2 or/and proton exchange membranes. Here we report wood-derived solid ionic conductor (WSIC) to propose EF...
The flexible and transparent film heaters (FTFHs) with the advantages of mechanical flexibility, portability, excellent electrothermal performance, are key to next generation portable, wearable thermal protection systems. However, present substrates FTFHs fabricated by typical plastic PET films, which suffer from poor interfacial adhesion thermally conductive materials. In this work, regenerated cellulose fibers made completely dissolved in NMMO solution followed regeneration process is...
By the slight adjustment of oxides constituting thin film transistor-liquid crystal display (TFT-LCD) substrate glass, including equal mole fraction substitution Al 2 O 3 , GeO B P 5 and ZrO for SiO as well CaO SrO with total contents unchanged, structural physico-chemical properties glass was investigated by Raman spectroscopy other measurements. The results showed that short-range disorder brought could weaken stability compactness network, deteriorated, while process melting would become...
The melting properties of two kinds glass substrates for thin film transistor liquid crystal display (TFT-LCD) and organic light-emitting diode (OLED) were investigated. Chemical reaction process the batches was similar determined by DSC-TG test. ascending behavior bubbles with different fining agents studied High-temperature imaging observation (HTO) Viscosity surface tension melt results showed that tin dioxide (SnO2) exhibited better effect than stannous oxide (SnO), both TFT-LCD OLED...
The cover glass for thin-film transistor liquid crystal display (TFT-LCD) panel is the high aluminum silicate glass. Compared with conventional soda lime glass, its higher viscosity of brought more difficulties in melting and fining process mass production. For better performance, some oxides that can reduce are necessary. In this paper, properties batches without B2O3 were investigated by CeO2 agent under reduced atmospheric pressure 1000 mbar, 500 300 mbar. Area Fraction, mean bubble size,...
In this work, we developed a wood solid ionic conductor (WSIC) directly processed from natural with simple cost-effective electro-Fenton (EF) strategy for the flowable production of H2O2 only using air and H2O in nature, freeing them traditional aqueous electrolytes, pure O2 supply expensive ion exchange membranes. The chip was cut trees possessing vertically-aligned microchannel structures by creating LiNO3 salt-polymeric layer that can continuously capture water molecules ambient to...