
Satoshi Horike
@HorikeGroup
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Inorganic Chemist at Grad School of Science, Kyoto University | 京大院理 化学専攻 | Glasses and liquids of molecular frameworks for energy
Kyoto | Rayong | Shanghai
Joined September 2017
Mechanical mixing borohydride + ammonia borane creates hydrogen-rich functional liquids - Melting temperature: 🧊 −50 °C, up to 6.9 wt% H₂. Now in Advanced Materials. #OpenAccess .Nice collaboration with hydride giant Andreas Züttel.
Check our latest work on #hydrogen storage material. We demonstrate the formation of a deep-eutectic solvent by mixing ammonia borane and organic borohydride with a melting temperature as low as -50°C ! @WileyGlobal
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RT @manattapol: Our attempt to create functional liquids from coordination polymers, recently published in @angew_chem.#OpenAccess . https:….
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We use many CO2 to make amorphous and soft MOFs. It's #OpenAccess please check this synthesis idea! @JMaterChem .
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Melting CP/MOF approaches material microstructures to discover new phases. @J_A_C_S .We created a binary phase diagram and optimized the composition to have a latent heat storage function. @VISTEC_Thailand .
pubs.acs.org
We demonstrated the construction of binary phase diagrams of coordination polymer crystals by using their reversible solid–liquid transition (melting and crystallization) behaviors. Three types of...
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RT @ThomasDBennett: Creating Functional Perovskite Glasses on I have a fully funded PhD position open @UCNZ to look….
findaphd.com
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The entanglement of the coordination polymer glasses is modulated by mechanical shear forces in melt-processing. A simple way to control mechanical/thermal/optical properties and perhaps porosity. Low-dimensional structures are exciting! @ChemicalScience .
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京大理の歴史ある講演会、今年は化学の番です。世の中にまだない新物質をどう予測して、どう創るのか、理論化学と超分子化学の世界最先端を明日、講演いただきます。登録不要、誰でも参加できます。二時、農G南の益川ホールまで! @Yagai_G @ICReDDconnect.
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CO2 as a building block for molecular porous materials in Acc. Chem. Res. #OpenAccess It includes future challenges in synthesis and CO2 circulation/upgrading.🧙.
pubs.acs.org
ConspectusThe conversion of carbon dioxide (CO2) to value-added functional materials is a major challenge in realizing a carbon-neutral society. Although CO2 is an attractive renewable carbon...
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Creating glass architectures has been a great challenge in chemistry @NatureChemistry.Precious moment working with glass experts led by @ThomasDBennett.
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RT @manattapol: Can we extend the design principles of MOFs to their amorphous counterparts? We aim to explore this in our latest study pub….
pubs.rsc.org
Controlling the structure and functionality of crystalline metal–organic frameworks (MOFs) using molecular building units and post-synthetic functionalisation presents challenges when extending this...
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京大理化・金相研に山本隆文さん @TakaYamamoto33 が着任されました。無機化学、固体化学を盛り上げてゆければと思っています。よろしくお願いします。.Prof. Takafumi Yamamoto @TakaYamamoto33 has been appointed to our department at Kyoto Univ. He's an expert in solid-state chemistry💎
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RT @MOF_papers: Interpenetrated Metal–Organic Framework Glass
pubs.acs.org
Metal–organic framework (MOF) glass having a three-dimensional interpenetrated structure was prepared by a mechanical milling treatment of the corresponding interpenetrated crystal structure....
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RT @ChemCommun: Did you read 'Entropically driven melting of Cu-based 1D coordination polymers' by Shin-ichiro Noro, Daniel M. Packwood @Ho….
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RT @brozeklab: Metal-linker bonds become more labile (and soft modes become softer) in MOF nanoparticles, leading to size-dependent phase c….
pubs.acs.org
Size reduction offers a synthetic route to tunable phase change behavior. Preparing materials as nanoparticles causes drastic modulations to critical temperatures (Tc), hysteresis widths, and the...
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Melt kneading of Cu-azolate coordination polymers yields unique ductile alloys. The fracture point reaches 128% without binder/filler; ductility is retained when soaked in liquid N2. @J_A_C_S #OpenAccess @VISTEC_Thailand .
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RT @miraimaterial: 現代化学8月号は未来材料祭り!.固体化学に携わる化学者3名、物理学者3名の座談会「固体化学の現在」の模様が掲載されています🙌陰山さんが司会をされています😊固体化学がこれから新たなフェイズに入っていくことが、ひしひしと感じられること間違いあり….
tkd-pbl.com
【最新号の目次】【インタビュー】関口仁子 博士原子核を形づくる力 三体核力西増弘志 博士タンパク質構造から生命現象に迫る【解説…
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RT @ISMSC2025: The first circular of ISMSC2025@Kyoto is now available! For the first information on the speakers, we are delighted to annou….
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