April 2025
·
4 Reads
ACS Applied Materials & Interfaces
This page lists works of an author who doesn't have a ResearchGate profile or hasn't added the works to their profile yet. It is automatically generated from public (personal) data to further our legitimate goal of comprehensive and accurate scientific recordkeeping. If you are this author and want this page removed, please let us know.
April 2025
·
4 Reads
ACS Applied Materials & Interfaces
January 2025
·
9 Reads
·
1 Citation
Applied Organometallic Chemistry
Transition metal nitride has been proved to be an ideal supercapacitor electrode material, and how to synthesize high‐performance transition metal nitride‐based materials rapidly and stably becomes critical. Here, we complexed the polydentate organic small molecule nitrilotriacetic acid with the transition metals Ni²⁺ and Co²⁺ and nitrided them by pyrolysis of urea. Considering the influence of the structure and morphology of the material on its energy storage properties, we further added sodium citrate to the system to study its effect on the morphology and properties of the complex. The composite (Ni‐Co‐N/NC) prepared under the optimal sodium citrate addition has a high specific capacitance of 610 F g⁻¹ at a current density of 1 A g⁻¹, and the specific capacitance remains at 84.4% of the initial capacitance after 5000 cycles at 5 A g⁻¹, which shows excellent cycling stability. The maximum energy density of the hybrid capacitor (Ni‐Co‐N/NC//AC ASC) assembled with activated carbon was 21.1 Wh·kg⁻¹ at a power density of 250 W·kg⁻¹, which shows a promising application in the field of energy storage.
January 2025
·
2 Reads
·
1 Citation
New Journal of Chemistry
As an emerging two-dimensional (2D) material, Ti3C2Tx MXene exhibits high surface area and high conductivity, demonstrating great potential for energy storage applications. However, their intrinsic tendency to restack results in...
January 2025
·
29 Reads
Green Chemistry
With an increasing emphasis on sustainable development goals, recycling of end-of-life waste plastics have gained significant attraction in view of protecting environment and reserving resources. Polyethylene (PE) material has been...
January 2025
Inorganic Chemistry Frontiers
Capacitive deionization (CDI) is a highly promising technique for removal ions from water, showing great perspective in desalination of salty water and wastewater remediation. CDI displays an energy efficiency, simple...
November 2024
·
24 Reads
·
1 Citation
Green Energy & Environment
September 2024
·
9 Reads
·
3 Citations
Crystal Growth & Design
August 2024
·
7 Reads
·
6 Citations
ACS Applied Energy Materials
July 2024
·
6 Reads
·
4 Citations
Inorganic Chemistry
June 2024
·
379 Reads
·
3 Citations
Here, we developed a lotus-leaf-resembling superhydrophobic coating with sturdy abrasion and weather resistance. By taking the sturdiness of the superhydrophobicity into account, this coating was created by incorporating a zinc-mediated superhydrophobic surface that was rough and ultraviolet-resistant into a polyurethane layer capable of strong wear resistance. By spraying the zinc-mediated perfluorosilane and a polyurethane suspension onto an aluminum flake, the lotus-leaf-resembling superhydrophobic coating was thus prepared. The resulting coating displayed the natural superhydrophobic phenomena with a contact angle of up to 157.1° and a rolling angle of 4.2°, greater or smaller by depending on the dosage of zinc. The adoption of zinc to the prepared coating not only mediated the rough surface texture but also extra granted the ultraviolet resistance. In couple with the strong wear resistance of the substrate layer, the proposed superhydrophobic coating provided the expected sturdy abrasion and weather resistance. The development of the superhydrophobic coating shares a prospect with practical applications, especially outdoor applications.
... In particular, the extent of reduction was high in HAP conjugates with the weight loss of over 80 % at 450 • C. On the other hand, for HA cross-linked with small molecule cross-linkers, like BDDE and FA, the degradation rate was lower than that of HAP materials. This may be due to the strong intermolecular interactions of the network can restrict polymer chain movement, which reduce the decomposition rate [64]. From thermal analysis results, it is evident that after chemical cross-linking thermal properties of HA was significantly improved. ...
January 2024
Materials Chemistry Frontiers
... SCs electrode materials are the most important determining factors for the electrode charge storage mechanism and the amount of stored charge. According to the type of electrode materials, supercapacitors are divided into carbon-based [3,4], metal oxide-based [5,6], conductive polymer-based [7], composite material-based [8,9], and so forth. Different electrode materials have different advantages and disadvantages. ...
August 2024
ACS Applied Energy Materials
... Moreover, the better thermal stability of 1D Cu-TABQ may be due to the formation of hydrogen bonds between -NH and C=O in the neighboring chains. [32,41] ...
July 2024
Inorganic Chemistry
... PU materials not only have good abrasion resistance [1][2][3], high thermal insulation [4], and biocompatibility [5], but also exhibit excellent durability, mechanical strength, and chemical resistance [6]. These properties have made PU the material of choice for the manufacture of products such as foams, elastomers, sealants, synthetic leather, adhesives, paints, highly durable protective coatings, and biomedical materials [7][8][9]. ...
June 2024
... 42,44 Raman scattering is also used for structural characterization of thin-film thermoelectrics. 16,[45][46][47][48][49][50][51][52] For future industrial applications, large-scale fabrication techniques, like slot-die coating or wet spray deposition, are preferred, as they are also roll-to-roll compatible. 53,54 Recent studies have achieved air-stable prototypes of flexible thermoelectric generators using wire-coated P3HT films, which were doped with ferric or chloroauric acid. ...
May 2024
Materials Chemistry Frontiers
... [38][39] However, the predominant micropores and convoluted pore pathways in MOFs pose significant obstacles to water transport and diffusion. [40][41][42] It remains a challenge to reduce water transport barriers and accelerate water diffusion in adsorbents through reticular chemistry. ...
May 2024
... This aromatic structure provides enhanced chemical stability and water resistance, making PF resins significantly more resistant to hydrolysis than UF resins. [5] Consequently, PF resins also emit lower level of formaldehyde compared to UF resins. [6] Despite their widespread use, formaldehyde-based adhesives have raised significant environmental and health concerns due to the release of formaldehyde, a volatile organic compound (VOC) known to cause respiratory irritation and carcinogenic effects. ...
April 2024
... SiNWs were prepared according to our previous reports [19,36,37]. The NiSi was prepared using a two-electrode system under a constant current of 0.003 A, where a solution consisting of 0.2 M nickel sulfate (NiSO 4 ·6H 2 O), 0.05 M ammonium chloride (NH 4 Cl), and 0.025 M sodium dodecyl sulfate (SDS) was employed as the electrolyte, SiNWs and platinum sheets (Pt) acted as counter electrodes. ...
April 2024
... SCs electrode materials are the most important determining factors for the electrode charge storage mechanism and the amount of stored charge. According to the type of electrode materials, supercapacitors are divided into carbon-based [3,4], metal oxide-based [5,6], conductive polymer-based [7], composite material-based [8,9], and so forth. Different electrode materials have different advantages and disadvantages. ...
January 2024
Materials Chemistry Frontiers
... Table 2 summarized some common preparation methods for Covalent Organic Frameworks (COFs) used in Table 1 Detailed comparison between normal electrochemical energy storage systems and hydrogen storage systems based on key parameters [19][20][21][22][23][24][25]. hydrogen (H₂) storage, along with references for each method [35][36][37][38][39][40][41][42][43]. Because of their intrinsic porosity and interior surface area, porous materials are seen as a promising class of materials for possible hydrogen storage. ...
January 2024
Green Chemistry