Yahoo Web Search

Search results

  1. Jul 17, 2013 · Abstract. UiO-66 is a highly important prototypical zirconium metal-organic framework (MOF) compound because of its excellent stabilities not typically found in common porous MOFs. In its perfect crystal structure, each Zr metal center is fully coordinated by 12 organic linkers to form a highly connected framework.

  2. Jun 28, 2013 · We obtained samples with pore volumes ranging from 0.44 to 1.0 cm 3 /g and BrunauerEmmettTeller surface areas ranging from 1000 to 1600 m 2 /g, the largest values of which are ∼150% and ∼60% higher than the theoretical values of defect-free UiO-66 crystal, respectively.

    • Hui Wu, Hui Wu, Yong Shen Chua, Yong Shen Chua, Vaiva Krungleviciute, Vaiva Krungleviciute, Madhusud...
    • 2013
  3. Behavioural Neuroscientist | IT Engineer | Psychologist Dr Vaibhav Tyagi is a quantitative researcher and uses advanced statistics, computer programming and software tools in his healthcare research. He is passionate about Person-centred healthcare practice and creativity & Innovation in nursing practice. Dr Tyagi.

  4. Oct 1, 2021 · H. Wu, Y.S. Chua, V. Krungleviciute, M. Tyagi, P. Chen, T. Yildirim, W. Zhou Unusual and highly tunable missing-linker defects in zirconium metal-organic framework UiO-66 and their important effects on gas adsorption

    • Jiahui Yan, Yanwei Sun, Taotao Ji, Liangliang Liu, Mu Zhang, Yi Liu
    • 2021
  5. DR. V. V. Tyagi. School of Energy Management, Shri Mata Vaishno Devi University, J & K. Verified email at smvdu.ac.in. Thermal Energy Storage Solar Energy Phase Change Materials and...

  6. Mar 1, 2018 · Highlights. •. A novel acetic-acid fragmented linker co-assembly strategy was proposed to create mesoporous defects in HKUST-1. •. The AcOH-fragmented materials showed significantly larger surface areas and pore volumes than HKUST-1. •. The AcOH-fragmented HKUST-1 materials showed improved methane uptakes compared to HKUST-1. •.

  7. Feb 1, 2009 · Abstract. The use of a latent heat storage system using phase change materials (PCMs) is an effective way of storing thermal energy and has the advantages of high-energy storage density and the isothermal nature of the storage process.