Area of research
Mechanical Engineering · Organic Chemistry
Research interest
Research focused on Photocatalysis and Lubrication, with related work in Heterojunction, Perylene, Grinding. Notable publications include 'Maximum undeformed equivalent chip thickness for ductile-brittle transition of zirconia ceramics under different lubrication conditions', 'Dispersing mechanism and tribological performance of vegetable oil-based CNT nanofluids with different surfactants', and 'Experimental assessment of an environmentally friendly grinding process using nanofluid minimum quantity lubrication with cryogenic air'.
Metallacage-crosslinked free-standing supramolecular networks via photo-induced copolymerization for photocatalytic water decontamination
Generation, Capture, Storage, and Release of Singlet Oxygen from a Perylene Diimide‐Based Metallacage for Oxygen Sensing
Generation, Capture, Storage, and Release of Singlet Oxygen from a Perylene Diimide‐Based Metallacage for Oxygen Sensing
Decoding wind power uncertainty: A Bayesian-optimized machine learning approach for multi-timescale dynamic transitions
Enhancing the Photosensitivity of Hypocrellin A by Perylene Diimide Metallacage-Based Host–Guest Complexation for Photodynamic Therapy
Evaluating drivers of PM2.5 air pollution at urban scales using interpretable machine learning
Host–guest complexation‐induced chirality switching of pillararenes by perylene diimide‐based hexagonal metallacages
Highly Efficient Self‐Assembly of Heterometallic [2]Catenanes and Cyclic Bis[2]catenanes via Orthogonal Metal‐Coordination Interactions
Highly Emissive Perylene Diimide-Based Metallacages and Their Host–Guest Chemistry for Information Encryption
Predictive model for minimum chip thickness and size effect in single diamond grain grinding of zirconia ceramics under different lubricating conditions
Dispersing mechanism and tribological performance of vegetable oil-based CNT nanofluids with different surfactants
Experimental assessment of an environmentally friendly grinding process using nanofluid minimum quantity lubrication with cryogenic air
Oriented ZnmIn2Sm+3@In2S3 heterojunction with hierarchical structure for efficient photocatalytic hydrogen evolution
Maximum undeformed equivalent chip thickness for ductile-brittle transition of zirconia ceramics under different lubrication conditions
Oriented growth of ZnIn2S4/In(OH)3 heterojunction by a facile hydrothermal transformation for efficient photocatalytic H2 production