Institution
Dalian University
Recent research
- Engineering & Technology
ABSTRACT Achieving compositionally homogeneous mixed‐halide (I − and Br − ) wide‐bandgap (WBG) perovskite films is crucial for high‐performance perovskite/crystalline silicon tandem solar cells (TSCs), yet the disparate crystallization kinetics of iodide‐ and bromide‐rich phases...
- Materials & Energy
ABSTRACT N,N‐dimethylformamide (DMF) is a quintessential industrial solvent and precursor, and its energy‐intensive, high‐temperature conventional synthesis necessitates the development of mild, sustainable biomass‐derived alternatives. Photoelectrocatalysis (PEC) offers a promis...
- Engineering & Technology
Yttrium oxide (Y2O3) has been widely used as a protective coating for the inner surfaces of semiconductor process chambers. In NF3-containing plasmas, corrosion may cause coating thinning and surface morphology reconstruction, thereby affecting in-service reliability. To elucidat...
- Engineering & TechnologyOpen access
ABSTRACT Gel polymer electrolytes (GPEs) show great promise in lithium–sulfur (Li–S) batteries, but their practical application is limited by the high enthalpy of Li + desolvation and the slow conversion rate of polysulfides, which disrupt the redox pathway and accelerate capacit...
- Materials & Energy
Photoinduced atom transfer radical addition (ATRA) has become a powerful strategy for the vicinal functionalization of carbon–carbon multiple bonds in alkenes and alkynes, garnering significant attention due to its high efficiency, mild conditions, operational simplicity, and exc...
- Engineering & TechnologyOpen access
Interpretable AI-driven materiomics to decode microenvironmental cues for stem cell immunomodulation
Abstract Hydrogels that mimic the extracellular matrix create microenvironments containing diverse physicochemical cues that regulate stem cell fate, particularly their immunomodulatory and pro-regenerative functions. However, elucidating how microenvironmental cues regulate cell...
- Materials & Energy
ABSTRACT Proton exchange membrane water electrolysis (PEMWE) is an environmentally friendly and efficient technology for hydrogen production, playing a vital role in mitigating the fossil energy crisis and bridging renewable energy generation with hydrogen utilization. This work...
- Materials & Energy
Organophosphorus compounds are widely used in bioactive molecules, catalysts, and ligands. Recent CH functionalization methods—often guided by directing groups—now enable direct formation of CC, CN, and CO bonds on phosphinamide substrates with improved step efficiency. This...
- Engineering & TechnologyOpen access
Gel Electrolytes for Flexible Zinc‐Air Batteries: Design, Challenges, and Perspectives
ABSTRACT Flexible zinc‐air batteries (FZABs) have emerged as promising candidates for next‐generation flexible electronics and large‐scale energy storage. However, dendrite growth, interfacial side reactions, and electrolyte leakage severely limit their cycle life and energy dens...
- Engineering & TechnologyOpen access
Anti-Disturbance Dynamic Memory Event-Triggered Control for Robotic Manipulator Systems
This study investigates the H∞ anti-disturbance dynamic memory event-triggered (ADDMET) control issue for Robotic Manipulator System (RMS) under multiple disturbances. An affine model is adopted to characterize the RMS, accounting for payload variations and complex operating cond...
- Materials & EnergyOpen access
Recent Advances in Zeolite-Based Catalysts for Hydroisomerization of Long-Chain Alkanes
Long-chain n-alkane hydroisomerization is a key catalytic route for upgrading wax-rich, bio-derived, and synthetic hydrocarbon feedstocks into diesel fuels, sustainable aviation fuels, and lubricant base oils with improved low-temperature properties. However, selective hydroisome...
- Health & Medicine
Bioelectronic Considerations in Biomedical Microneedles
Microneedles (MNs), fabricated from diverse materials and assembled into arrays, have emerged as promising platforms for transdermal drug delivery and health monitoring. However, conventional MN-based theranostic systems mainly rely on passive diffusion and often involve complica...
- Engineering & TechnologyOpen access
Conventional linear isolators struggle to combine high static load-bearing capacity with effective low-frequency vibration isolation. To address this limitation, this study proposes an inclined rhombic crab-inspired quasi-zero-stiffness (I-QZS) isolator. A generalized static mode...