Chang Li
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View article: Predicting Bulk Density for Agglomerated Raspberry Ketone via Integrating Morphological and Size Metrics Using Artificial Neural Networks
Predicting Bulk Density for Agglomerated Raspberry Ketone via Integrating Morphological and Size Metrics Using Artificial Neural Networks Open
The bulk density of the particles, which is directly related to transportation and storage costs, is an important basic characteristic of products as well as an important parameter in many processing systems. This work quantified the relat…
View article: Vascular network-inspired fluidic system (VasFluidics) with spatially functionalizable membranous walls
Vascular network-inspired fluidic system (VasFluidics) with spatially functionalizable membranous walls Open
In vascular networks, the transport across different vessel walls regulates chemical compositions in blood over space and time. Replicating such trans-wall transport with spatial heterogeneity can empower synthetic fluidic systems to progr…
View article: Accelerated Selective Li+ Transports Assisted by Microcrack‐Free Anionic Network Polymer Membranes for Long Cyclable Lithium Metal Batteries
Accelerated Selective Li+ Transports Assisted by Microcrack‐Free Anionic Network Polymer Membranes for Long Cyclable Lithium Metal Batteries Open
Rechargeable Li metal batteries have the potential to meet the demands of high‐energy density batteries for electric vehicles and grid‐energy storage system applications. Achieving this goal, however, requires resolving not only safety con…
View article: Insights into the Covalent Organic Frameworks Applied in High-Performance Nanofiltration
Insights into the Covalent Organic Frameworks Applied in High-Performance Nanofiltration Open
Covalent organic frameworks (COFs) have received considerable attention in molecular separation due to their tunable structures. However, how to determine the optimal number of layers for a COF is lack of theoretical guidance while conside…
View article: Ionic hydrogels-based triboelectric nanogenerators for self-powered human–machine interfaces
Ionic hydrogels-based triboelectric nanogenerators for self-powered human–machine interfaces Open
Ionic hydrogels outperform existing rigid and bulky electronics with many remarkable advantages including great flexibility, high conductivity, exceptional biocompatibility, and transparency, making them ideal materials for wearable human–…
View article: Dry reforming of methane for syngas production over noble metals modified M-Ni@S-1 catalysts (M = Pt, Pd, Ru, Au)
Dry reforming of methane for syngas production over noble metals modified M-Ni@S-1 catalysts (M = Pt, Pd, Ru, Au) Open
High tendency to sinter and carbon deposition becomes the choke point of Ni-based catalyst for its performance optimization in syngas generation via dry reforming of methane (DRM). Uniting the encapsulation of support with the construction…
View article: Constructing a honeycomb‐inspired <scp>Ni‐Co LDHs</scp>@<scp>CFs</scp> enhanced polymer composites with high strength, aging resistance and excellent anti‐wear for tribological applications
Constructing a honeycomb‐inspired <span>Ni‐Co LDHs</span>@<span>CFs</span> enhanced polymer composites with high strength, aging resistance and excellent anti‐wear for tribological applications Open
The development of carbon fibers/polymer composites (CFPCs) has made a profound impact on varied application prospects in the transmission and braking fields, where interface engineering between fibers/matrix holds the key to co‐enhanced m…
View article: Cobalt‐Nickel Ultrathin Hexagonal Nanosheets for High‐performance Asymmetric Supercapacitors
Cobalt‐Nickel Ultrathin Hexagonal Nanosheets for High‐performance Asymmetric Supercapacitors Open
In this work, uniform ultrathin hexagonal nanosheets of Co−Ni bimetallic hydroxides are synthesized using a simple green hydrothermal synthesis method. By tuning a Co/Ni mole ratio of 1 : 2, a special nanosheet structure of Co 0.32 Ni 0.68…
View article: Gas-solid fluidization modification of calcium carbonate for high-performance poly (butylene adipate-co-terephthalate) (PBAT) composites
Gas-solid fluidization modification of calcium carbonate for high-performance poly (butylene adipate-co-terephthalate) (PBAT) composites Open
Modifying biodegradable poly (butylene adipate-co-terephthalate) (PBAT) plastic with inorganic fillers is critical for improving its overall performance, lowering the costs, and expanding its application scope. The chemical modification me…
View article: The effect of process parameters on the properties of elastic melt blown nonwovens: Air pressure and <scp>DCD</scp>
The effect of process parameters on the properties of elastic melt blown nonwovens: Air pressure and <span>DCD</span> Open
An elastic masterbatch and elastic melt blown nonwovens are prepared based successively on styrene‐ethylene/butylene‐styrene (SEBS) and polypropylene (PP) blend. The phase separation morphology, rheological properties and crystal structure…
View article: Experimental and modeling evidence of hydroxyl radical production in iron electrocoagulation as a new mechanism for contaminant transformation in bicarbonate electrolyte
Experimental and modeling evidence of hydroxyl radical production in iron electrocoagulation as a new mechanism for contaminant transformation in bicarbonate electrolyte Open
Iron electrocoagulation is designed for sustainable high-efficiency and high-flexibility water purification applications. Recent advances reported that hydroxyl radicals (•OH)-based oxidative transformation of organic contaminants can occu…
View article: Combustion Characteristics of Low Calorific Value Biogas and Reaction Path of NOx Based on Sensitivity Analysis
Combustion Characteristics of Low Calorific Value Biogas and Reaction Path of NOx Based on Sensitivity Analysis Open
The combustion mechanism of biogas mixture is unclear, which leads to the lack of basis for the control of operating parameters. Combustion characteristics and reaction path of typical low calorific value biogas with variation of preheatin…
View article: Analysis of the potential role of photocurable hydrogel in patient-derived glioblastoma organoid culture through RNA sequencing
Analysis of the potential role of photocurable hydrogel in patient-derived glioblastoma organoid culture through RNA sequencing Open
A photocurable hydrogel showed potential application prospects in patient-derived glioblastoma organoid cultures.