Excited to see our latest work on "Fast Organic Room-Temperature Phosphorescence" finally out @ChemicalScience !! We decipher the record-breaking RTP efficiency in solution and the mechanism behind it.
Great collaboration w/ @KiyoshiMIYATA_E ! https://t.co/Jd0P1JpOAi
Fluorescence Imaging Using Deep-Red Indocyanine Blue, a Complementary Partner for Near-Infrared Indocyanine Green
By Rananjaya Gamage & Bradley Smith @NotreDame
🔓 Open access in Chemical & Biomedical Imaging 👉 https://t.co/ayQWlmu8Vx
I built a model using 30 pencils, with the icosahedral rotational symmetry.
The structure should be identical to the origami model of six interlocking pentagonal prisms here, by Daniel Kwan:
https://t.co/nY3zHkWyjL
ICYS Alumni, Drs. Terumasa TADANO, Kotaro DOI, Shoichi MATSUDA received the “Young Scientists Award”, 2024 Commendation for Science and Technology by the Minister of Education, Culture, Sports, Science and Technology (MEXT).
https://t.co/lV9OFyeOIL
Controlling Interchromophore Coupling in Diamantane-Linked Pentacene Dimers To Create a “Binary” Pair | Journal of the American Chemical Society https://t.co/AxzKK2o8lq
SF workshopで聞いたnice posterだった
Check out this recently published article on the kinetics of Ir(III)-complex catalyzed reaction of fluorescent ubiquinone-rhodol (Q-Rh) dye with NADPH leading to Q-Rh reduction and NADPH activation. @JLabuta_Chem read it here: https://t.co/JK5TnWKWOZ
We rejected Shannon information theory and proposed Fractal Information Theory, in 2016. We suggested that nature has no classical point, so we reject bits and qubits. Information structure is made of singularity points, like the one you see here. These holes bursts energy (1/2)
These holes bursts energy because the holes contain another information structure inside. We see the bursts and build an illusion of classical mechanics, and classical world. In reality, Quantum is real and classical is impossible. I cant believe in classical.
Our organic gel computer builds processor circuit on demand in the chemical beaker, the circuit is a single supramolecular architecture or an adiabatic computing and we named it invariant computing because it tells the approximate theoretical model in output (3/3)