Research Areas
Biography and Research Information
OverviewAI-generated summary
H. Wang's research has explored surface science and materials, with publications focusing on the adhesion and friction properties of nano-textured surfaces. Studies include work on surfaces created using colloidal silica nanoparticle solutions and UV-assisted crystallization of amorphous silicon. Other publications address the nanomechanical properties of patterned surfaces and the development of superhydrophilic textured surfaces on stainless steel. In parallel, Wang has contributed to research in molecular biology and food safety, evidenced by a publication on a multiplex polymerase chain reaction assay for detecting common foodborne pathogens like E. coli O157:H7, Listeria monocytogenes, Salmonella Typhimurium, and Campylobacter jejuni. More recently, Wang's work has shifted towards artificial intelligence and natural language processing, with recent publications in 2026 on areas such as toxicity detection in French language models, adaptive jailbreak defense for AI safety, and speculative decoding enhancements.
Metrics
- h-index: 1
- Publications: 1
- Citations: 46
Selected Publications
-
Temperature-Dependent ESD Robustness in Micrometer 4H-SiC CMOS Technology (2026)
-
Threshold Voltage Hysteresis and Bias Temperature Instabilities in SiC Low-Voltage CMOS Transistors (2026)
-
Threshold Voltage Hysteresis and Bias Temperature Instabilities in SiC Low-Voltage CMOS Transistors (2026)
-
Superhydrophilic textured-surfaces on stainless steel substrates (2009)
-
Nanomechanical properties of a Ni nanodot-patterned surface (2008)
-
Hardness and Frictional Properties of Alumina Coatings by AC Inverted Magnetron Sputtering Technique (2007)
-
Adhesion and friction studies of a nano-textured surface produced by spin coating of colloidal silica nanoparticle solution (2006)
-
Adhesion and Friction Studies of a Selectively Micro/Nano-textured Surface Produced by UV Assisted Crystallization of Amorphous Silicon (2005)
-
A MULTIPLEX POLYMERASE CHAIN REACTION ASSAY FOR RAPID DETECTION OF ESCHERICHIA COLI O157:H7, LISTERIA MONOCYTOGENES, SALMONELLATYPHIMURIUM AND CAMPYLOBACTER JEJUNI IN ARTIFICIALLY CONTAMINATED FOOD SAMPLES (2005)
-
DETERMINATION OF POSSIBLE GENOMIC CHANGES ASSOCIATED WITH DIMORPHISM IN CAMPYLOBACTER JEJUNI (2005)
Collaboration Network
Top Collaborators
- Adhesion and friction studies of a nano-textured surface produced by spin coating of colloidal silica nanoparticle solution
- Adhesion and Friction Studies of a Selectively Micro/Nano-textured Surface Produced by UV Assisted Crystallization of Amorphous Silicon
- Superhydrophilic textured-surfaces on stainless steel substrates
- Nanomechanical properties of a Ni nanodot-patterned surface
- Hardness and Frictional Properties of Alumina Coatings by AC Inverted Magnetron Sputtering Technique
- Threshold Voltage Hysteresis and Bias Temperature Instabilities in SiC Low-Voltage CMOS Transistors
- Threshold Voltage Hysteresis and Bias Temperature Instabilities in SiC Low-Voltage CMOS Transistors
- Temperature-Dependent ESD Robustness in Micrometer 4H-SiC CMOS Technology
- A MULTIPLEX POLYMERASE CHAIN REACTION ASSAY FOR RAPID DETECTION OF ESCHERICHIA COLI O157:H7, LISTERIA MONOCYTOGENES, SALMONELLATYPHIMURIUM AND CAMPYLOBACTER JEJUNI IN ARTIFICIALLY CONTAMINATED FOOD SAMPLES
- DETERMINATION OF POSSIBLE GENOMIC CHANGES ASSOCIATED WITH DIMORPHISM IN CAMPYLOBACTER JEJUNI
- Adhesion and friction studies of a nano-textured surface produced by spin coating of colloidal silica nanoparticle solution
- Adhesion and Friction Studies of a Selectively Micro/Nano-textured Surface Produced by UV Assisted Crystallization of Amorphous Silicon
- Threshold Voltage Hysteresis and Bias Temperature Instabilities in SiC Low-Voltage CMOS Transistors
- Temperature-Dependent ESD Robustness in Micrometer 4H-SiC CMOS Technology
- Threshold Voltage Hysteresis and Bias Temperature Instabilities in SiC Low-Voltage CMOS Transistors
- Temperature-Dependent ESD Robustness in Micrometer 4H-SiC CMOS Technology
- Threshold Voltage Hysteresis and Bias Temperature Instabilities in SiC Low-Voltage CMOS Transistors
- Temperature-Dependent ESD Robustness in Micrometer 4H-SiC CMOS Technology
- DETERMINATION OF POSSIBLE GENOMIC CHANGES ASSOCIATED WITH DIMORPHISM IN CAMPYLOBACTER JEJUNI
- Superhydrophilic textured-surfaces on stainless steel substrates
- Nanomechanical properties of a Ni nanodot-patterned surface
- Nanomechanical properties of a Ni nanodot-patterned surface
- Nanomechanical properties of a Ni nanodot-patterned surface
- Nanomechanical properties of a Ni nanodot-patterned surface
- Nanomechanical properties of a Ni nanodot-patterned surface
- Nanomechanical properties of a Ni nanodot-patterned surface
Similar Researchers
Based on overlapping research topics