Our full paper on the theory of pressure-driven phase transitions in baroplastics is now published in Macromolecules! 🎉📄🔗 https://t.co/aiq3814rwf It provides a comprehensive theoretical framework for baroplastic phase behavior under pressure.
Discover how deep-sea microbes 🌊 are unlocking sustainable manufacturing! 🦠
@JAMSTEC_PR Press Release:
English: https://t.co/jSat4U5UTo
Japanese: https://t.co/mc8VU2cJVH
📜 Read the full paper here: https://t.co/FBB0w6FbZt
#DeepSeaInspired#Sustainability#Cellulase
Truly honored to be at the 2024 @KyotoPrize Presenting Ceremony. Congratulations to this year’s inspiring laureates in Advanced Technology, Basic Sciences, and Arts & Philosophy—your achievements elevate us all.
https://t.co/DFBzUVqgrR
Our latest paper unveils how carotenoid terminal groups influence nanoparticle structure & optical properties. A breakthrough for functional food & beverage tech! 🥤🍅
Read more: https://t.co/ygzUWFoSsY
#Nanotechnology#Carotenoids#FunctionalFoods
Our latest paper on deep-sea microbial cellulases has been published. 🌊🦠 This showcases how deep-sea-inspired chemistry can drive sustainability by unlocking new ways to degrade cellulose. Amazing what the deep sea holds for biochemistry!#DeepSeaInspired
https://t.co/FBB0w6FbZt
Our latest paper in ACS Sustainable Resource Management showcases how deep-sea-inspired chemistry enables the conversion of a recyclable polymer to phenol using high-temperature water.🌊🔬♻️
#Deep-sea-Inspired #Sustainability#GreenChemistry
https://t.co/WeNEzEEB4S
GH123 has expanded
#glycotime
Sumida, T., Hiraoka, S., Usui, K. et al. Genetic and functional diversity of β-N-acetylgalactosamine-targeting glycosidases expanded by deep-sea metagenome analysis.Nat Commun 15, 3543 (2024). https://t.co/I60pHd9ZVc
🔬 The discovery of highly novel β-N-acetylgalactosaminidases by metagenomic analysis of deep-sea sediments. 🌊 Just published in @NatureComms. 📝 Dive into the evolutionary journey of these enzymes as they acquire diverse functions!
https://t.co/kXrSNNkLBT