{Developing|Creating|Building|Establishing} a catalyst for green hydrogen production {through|via|by means of|by way of} water splitting, {is one of the|is among the|is amongst the} mostpromising {ways|methods|techniques|approaches|strategies} to meet {current|present|existing} {energy|power} demand. {Here|Right here}, we demonstrate spontaneous water splittingusing gadolinium telluride (GdTe) with {high|higher} hydrogen evolution {rate|price}. The spent catalyst can bereused {after|following|right after|soon after|immediately after|just after} melting, which regains the original activity {of the|from the|in the|on the|with the|of your} pristine sample. The phase formationand reusability are supported by the thermodynamics calculations. The theoretical calculationreveals ultra-low over-potential for hydrogen evolution reaction of GdTe {caused|brought on|triggered} by charge transferfrom Te to Gd, {hence|therefore} enhancing the catalytic activity. Production of {highly|extremely|very|hugely} pure and instantaneoushydrogen by GdTe could accelerate fuel cell-based sustainable technologies. 3-Azidopropanoic acid In stock Formula of 944902-01-6 PMID:24238102

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