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Mg–Al-Layered double hydroxide nanostructures for sustainable highly active hydrogen production via sodium borohydride methanolysis

delete2026-07-31
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PRE
AI
H
Hatice Çağlar Yılmaz
A
Asım Balbay
S
Sema Erdemoğlu
C
Cafer Saka *
DOI:10.1007/s11164-026-06075-zdelete
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Abstract

Abstract

En 中文
Developing low-cost and high-performance catalysts is essential for practical hydrogen generation from chemical hydrides. In this study, a magnesium–aluminum layered double hydroxide catalyst was successfully prepared through a urea-assisted hydrothermal co-precipitation route and applied for hydrogen production via sodium borohydride methanolysis. Structural analyses confirmed the formation of a crystalline layered framework with homogeneously dispersed nano-sized particles and a porous surface architecture. Under the selected reaction conditions (0.125 g NaBH4, 10 mL methanol, 0.01 g Mg–Al LDH catalyst, and 30 °C), the catalyst achieved a hydrogen generation rate (HGR) of 18,674 mL min⁻1 g⁻1 and the catalyst generated 330 mL of hydrogen within 4.5 min, indicating rapid catalytic kinetics. The enhanced activity was associated with the cooperative interaction between magnesium and aluminum active centers, which promoted surface basicity and accelerated borohydride activation. Furthermore, the catalyst preserved its structural integrity and catalytic efficiency during five consecutive reuse cycles with only minor performance loss. These findings demonstrate that magnesium–aluminum layered double hydroxide is a promising catalyst for efficient and sustainable on-demand hydrogen production in future portable clean energy conversion and storage systems.
Keywords:
Magnesium–aluminum layered double hydroxide
Sodium borohydride methanolysis
Hydrogen generation
Chemical hydrogen storage
Power and energy systems

Journal

Research on Chemical Intermediates cover
Research on Chemical Intermediates
IF:
3.5
Papers:
634
Citations:
9.9K

Organization

D
department of engineering basic sciences malatya
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2
Papers: 1
Citations: 0
F
Faculty of Health Sciences
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2.3K
Papers: 1.1K
Citations: 2
F
Faculty of Engineering and Natural Sciences
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299
Papers: 188
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D
Department of Chemistry
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6.8K
Papers: 3.0K
Citations: 7
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