Time flies while you're having fun! And while many encounters of the past few months will remaim wonderful offline memories, I would like to ✨️highlight✨️ some wonderful researchers:
Im aktuellen @sciam berichtet @elisecutts über die Forschung von @CmTonauer zu exotischen Eisformen. Sie erzeugt im Labor Eis wie es im Weltall oder auf Monden von Saturn und Jupiter vorkommt. #AlienIce#wasser#chemie
https://t.co/lh4Q7TtJPf
Interesting plain language introduction to a recent paper on ice XII-XIV by the Innsbruck team, Tonauer, Hauschild, & co-workers. Surprised to know about textures of ices – I need more experiences to feel textural differences of ordered ice by hand!❄️
Honored and excited that our research on❄️ordering deuterated ices❄️published in @PNASNexus caught the attention of @sciam ! Huge shout-out to @elisecutts for the insightful explanation on 'How to Make Alien Ice'. 🌌❄️ #Ice#Research#PNASNexus
https://t.co/lLV2wJW1Du
Reflecting on an amazing #Bunsentagung2024 at #RWTH#Aachen! Delighted to share insights on #Deuterated#Ices and to represent the young Physical Chemists of the German Bunsen Society #yPC!
Learn more about #ice ordering ❄ https://t.co/O5WRPswaXR
The scientists identified Saturn’s moon #Enceladus as the most compelling target. Plumes spew through its icy crust, rich in organic compounds, some of which are key for life. And its underground ocean seems to hold a powerful source of chemical energy that could fuel living organisms 🦠
New in @PNASNexus: Our study explores strategies against frustration in #ice crystals. Join the conversation on #ice#water#research ❄️❄️❄️ @PNASNews
https://t.co/Dh79tZ97lQ
My PhD journey @uniinnsbruck has come to an end - thanks to everybody who has supported me on my way (also props to my dear fellow group members for this awesome Dr.'s hat 👩🔬👩🎓😍
#postdoc@desy
Pure #cubic#ice without hexagonal stacking faults first proposed in 1943, but experimentally realized in 2020. Present calorimetry study clarifies difference in enthalpy between cubic & hexagonal ice to be -37.7 J mol-1 at 226 K. @CmTonauer@uniinnsbruck
https://t.co/i0XlHH8gDC
#HappyBirthday Rosalind Franklin! The British chemist's work was central to the understanding of molecular structures. To this day, many are still fascinated by her contribution to the double-helix structure in DNA. Learn more here: https://t.co/nMZ3Ps88Eo
#PhysicsWorld