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Авторы

Maher Ali Rusho

Последняя известная организация:
Lockheed Martin (Canada)
ORCID:
0009-0007-7774-8382
6
h-индекс
2
i10-индекс
75
Цитирования
30
Работы
Динамика

Показатели по годам

Обзор цитирований

Публикации (столбцы) и цитирования (линия) по годам

  • Публикации
  • Цитирования
0132538500255075100202520262025: Публикации 27, Цитирования 662026: Публикации 3, Цитирования 9

История цитирований

0255075100202520262025: Цитирования 662026: Цитирования 9

История публикаций

013253850202520262025: Публикации 272026: Публикации 3

Эволюция h-индекса

Накопительный h-индекс по годам

035810202520262025: h-индекс 52026: h-индекс 6

Наиболее цитируемые работы

  1. Decoration of palladium nanoparticles over Thymus pannonicus extract modified magnetic nanoparticles: synthesis, characterization and evaluation of its catalytic performance in the synthesis of 5-Substituted-1H-tetrazoles202513 цит.
  2. Palladium nanoparticles immobilized on magnetic iron oxide nanoparticles facilitated by Artemisia absinthium extract as an effective nanocatalyst for Heck–Mizoroki coupling reactions202512 цит.
  3. Green synthesized Zinc oxide nanoparticles mediated by Thymus pannonicus extract as a novel catalyst in the reduction of aromatic nitro compounds20259 цит.
  4. Toxicity of nano-CuO and biogenic synthesis of Pd NPs promoted over Artemisia absinthium leaves extract: Exploring its catalytic potential for Suzuki coupling reactions20258 цит.
  5. Design and synthesis of decorated palladium nanoparticles on chitosan-tannic acid modified magnetic nanoparticles and evaluation of its catalytic application in the Heck coupling reactions20257 цит.
  6. Design and decorated gold nanoparticles over the Arabic gum-chitosan hydrogel polymers as a novel catalyst for Sonogashira coupling reactions20256 цит.
  7. Bio-supported of gold nanoparticles over magnetic nanoparticles: Synthesis, characterization and evaluation its catalytic activity for one-pot preparation of pyrano[2,3-d]pyrimidines20255 цит.
  8. Advanced MnNi-P/ZIF8@CNT electrocatalyst for CO2 reduction: Achieving high efficiency, stability, and low energy demand20252 цит.
  9. Investigation of aluminum nitride monolayer with biphenylene network as a potential negative electrode for magnesium ion battery20252 цит.
  10. DFT insights into the adsorption mechanism Mg and storage capacity on the biphenylene monolayer surface for Mg ion batteries20252 цит.