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International Journal of Hydrogen Energy· 2026Q1

Metanol kontrollü yapısal tutunma, bağlayıcısız peletleme sırasında metal-organik çerçevelerde hidrojen depolamayı iyileştirir

Methanol-controlled structural retention of metal-organic frameworks during binder-free pelletisation for enhanced hydrogen storage

Qian Yu, Shaowei Zhang, Chengming Shang, Bingbing Fan ve diğerleri

Kısa özet

CuBTC MOF'un bağlayıcısız peletlemeden önce 60 dakika metanol ile muamele edilmesi, hidrojen tutunmasını %92,2 oranında koruyarak 77 K ve 20 bar'da 3,54 wt% H2 elde edilmesini sağlamıştır.

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Özet (abstract)

Metal-organic frameworks (MOFs) typically have structural degradation from mechanical compaction. Here, CuBTC was prepared through a sequential one-pot solid-state route and shaped by binder-free room-temperature uniaxial pelletisation. Methanol treatment duration was varied before compaction to determine its effect on structural and hydrogen-storage retention. CuBTC powder treated with methanol for 60 min retained 92.2% of its gravimetric hydrogen uptake after pelletisation, giving 3.54 wt% H 2 at 77 K and 20 bar. Longer methanol treatment reduced compaction-related losses in specific surface area, pore volume, and hydrogen uptake, though it also lowered isolated product yield from 40.0% (5 min) to 34.9% (60 min). The solid-state route produced approximately twice the recovered mass versus previous ball-milling synthesis. These results show that methanol treatment before binder-free pelletisation can improve the retention of CuBTC porosity and hydrogen uptake; further pressure-dependent and replicated mechanical testing is required to establish the compaction mechanism and scale-up performance.

Yazarların özeti; kaynağından alınmıştır. International Journal of Hydrogen Energy, 2026 · DOI ↗

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Alan: İnorganik Kimya

Inorganic ChemistryChemistry