Cost-Aware Bayesian Optimization for Self-Driven Condition Screening of Flow Electrosynthesis
By Kai Wang, Zhihong Yuan et al @Tsinghua_Uni
Open access in ACS Electrochemistry 👉 https://t.co/GpDeS0Gxln
Modulating Electronic Correlations in Ruthenium Oxides for Highly Efficient Oxygen Evolution Reaction
By Zhenpeng Hu, Shiming Zhou et al @NanKaiUniv
Open access in Precision Chemistry 👉 https://t.co/YcBzMeboA4
Role of Plasma in Catalyst Preparation and Modification for Oxygen Evolution Reaction
A review by Naeem Ahmed, Chunhua Cui et al of University of Electronic Science and Technology of China
Open access in Precision Chemistry here 👉 https://t.co/B5az72PprC
A good way to start the weekend is watch reduction of 4-nitrophenol into 4-aminophenol with a nice color change. The yellow color is due to smaller HOMO-LUMO energy level in nitrophenolate anion enhanced by the delocalization of electrons. This electron delocalization is lost due to reduction of nitro group to amine functional form which does not absorb light in visible spectrum. The catalyst (left) in the video is helping with the reduction process which is absent in control system (right). The catalyst video changes the color of the continuous flow reactor from yellow to colorless.
On the cover of this week's issue: "Lattice-Embedded Single-Atom Sr–O–Ni Channels Enable Photon–Phonon Coupling for Photothermal N2O Decomposition"
Read it here 🔗 https://t.co/8xhuWUIgSv
Happy to finally share our work where we made one step forward in understanding the reconstruction of copper electrocatalysts for CO2RR, just published in @NatureCatalysis
https://t.co/XtQnpdQ82j
My lab's 2nd paper is out in @NatureCatalysis!
What is happening at the electrified interface during electroorganic reactions? Here is our first taste of revealing how it's organized to enable fragment-based electrophile coupling!
w QC, Sarah, Rocco
https://t.co/2CzKLh5Z1P
ECM Electrolyzer Cell Material -
3D coating to radically reduce the iridium catalyst loading
Prototypes with only 0.5 mg of iridium per square centimeter produce as much hydrogen as a standard material with 2.5 mg https://t.co/A6wTZbWz72 #hydrogen#electrolyser#börs
I am both humbled and honored to have been offered a position of Assistant Professor in the Department of Chemistry at IIT Kanpur @iit_kanpur!
It is surely the happiest news I received in recent times 😍 Onto the next chapter ❤️😎
🔑 🔥🗝️ Learn material secrets wt XAS! We built a DFT XAS database: 2681 S K-edge spectra of 66 crystal/amorphous for Li-thiophosphates. Dive into S-based solid electrolytes, connect spectral features to specific S species #Database Sci. Data (2023)🔋🔋10.1038/s41597-023-02262-4
One of the most impactful journals, Nature Materials, published unsolicited coverage of our MAX/MXene chemical scissors work, originally published in Science.
https://t.co/BWPdODqHcJ