NIAB Research Group
NIAB Research Group
Home
The Lab
News
People
Collaboration
Publications
Contact
Pichaya In-Na
Latest
Erythromycin mediates co-flocculation between cyanobacterium Synechocystis sp. PCC 6803 and filamentous fungi in liquid cultivation without organic compounds
Microalgal-bacterial immobilized co-culture as living biofilters for nutrient recovery from synthetic wastewater and their potential as biofertilizers
Synergistic Integration of Nanogenerators and Solar Cells: Advanced Hybrid Structures and Applications
Erythromycin treatment under a specific nitrogen supply affects carbon metabolism and increases poly(3-hydroxybutyrate) and glycogen accumulation in cyanobacterium Synechocystis sp. PCC 6803
Triboelectric Nanogenerators Based on Immobilized Living Microalgae for Biomechanical Energy Harvesting
A focused review on three-dimensional bioprinting technology for artificial organ fabrication
Advancement on mixed microalgal-bacterial cultivation systems for nitrogen and phosphorus recoveries from wastewater to promote sustainable bioeconomy
Clay 3D printing as a bio-design research tool: development of photosynthetic living building components
Engineered living photosynthetic biocomposites for intensified biological carbon capture
Living textile biocomposites deliver enhanced carbon dioxide capture
Piezoelectric energy harvesting systems for biomedical applications
Immobilising microalgae and cyanobacteria as biocomposites: New opportunities to intensify algae biotechnology and bioprocessing
Photosynthetic textile biocomposites: Using laboratory testing and digital fabrication to develop flexible living building materials
Textile-based cyanobacteria biocomposites for potential environmental remediation applications
Architectural Laboratory Practice for the Development of Clay and Ceramic-Based Photosynthetic Biocomposites
Loofah-based microalgae and cyanobacteria biocomposites for intensifying carbon dioxide capture
Algae biocomposites for carbon capture and storage
Cite
×