
Garaj Lab
@GarajLab
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Garaj Research Group – exploring interface between hard and soft matter
Singapore
Joined August 2018
Our spinoff Reacto won Extreme Tech Challenge in Cleantech, Energy & Environ!!!.The team will pitch in front of tech visionaries like Bill Gates at the XTC Global Finals on the TechCrunch in San Francisco! #XTC2022 #Cleantech #NUSimpact #NUSSustainability
extremetechchallenge.org
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RT @NatRevPhys: Review: Controlling covalent chemistry on graphene oxide. Shi Guo, @slaveng, @BiancoTeam & @CeciliaMenard discuss how to co….
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Our spin-off @reActowater has been selected to take part at @Shell StartUp Engine – global innovation programme for energy start-ups with high growth potential, helping transition to a net-zero emissions world. Pitch: Info:
shell.com.sg
The Shell StartUp Engine is a global innovation programme for early to mid-stage energy startups looking to develop their capabilities and power business growth within the smart, clean energy...
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New cleantech spin-off from our lab @reActowater has superior technology for cleaning Persistant Organic Polutants (POP) using electrochem. processes. Our new grafted graphene electrodes validate the tech. Go Massimo & Jianxiang. #cleantech. More:
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RT @ResearchFos: Fitting a camel thru the eye of a needle? DNA knows how, according to NUS researchers @GarajLab. Large ds-DNA knots, when….
pubs.acs.org
Knots in long DNA molecules are prevalent in biological systems and serve as a model system for investigating static and dynamic properties of biopolymers. We explore the dynamics of knots in...
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New paper in Nano Lett on malleability of DNA. Large DNA knots, after passing thru nanopore 100X smaller, emerge without changing their shape. DNA achieves this feat of contortion by sprouting flexible hinges in the DNA loops, with disrupted base-pairs.
pubs.acs.org
Knots in long DNA molecules are prevalent in biological systems and serve as a model system for investigating static and dynamic properties of biopolymers. We explore the dynamics of knots in...
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Postdoctoral researcher opening: developing nanopore sensors for fingerprinting microbial contaminants. Part of CAMP SMART Program - collaboration between @GarajLab and The Doyle Group (MIT). @TheNanoporeSite. #nanofluidics #nanopores.
garaj-lab.org
Research Fellows Currently no opening Undergraduate Projects and Internships To enquire and for more information.
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Are the knots in DNA molecules very tight or loose? .Our paper on nanopore investigations DNA knots is online in Nature Comm. Congrats Rajesh & Ishita. @TheNanoporeSite #nanofluidics #nanopores
nature.com
Nature Communications - Nanopore microscopy is capable of detecting knots in DNA polymers, a common structural feature. Here the authors show nanopore sensors can map the equilibrium structure of...
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