Recent advances in cellulose supported metal nanoparticles as green and sustainable catalysis for organic synthesis

被引:0
作者
Samir Kamel
Tawfik A. Khattab
机构
[1] National Research Centre,Cellulose and Paper Department
[2] National Research Centre,Dyeing, Printing and Auxiliaries Department
来源
Cellulose | 2021年 / 28卷
关键词
Cellulose; Catalysis; Organic synthesis; Selectivity; Green chemistry;
D O I
暂无
中图分类号
学科分类号
摘要
Organic reactions generally involve a variety of catalysts and solvents, which may be inflammable, toxic, and/or corrosive. Consequently, most of these reactions highly influence the environment. However, recent science and technology applications shift towards eco-friendly and sustainable resources and processes. Nanocatalysis has recently become an emerging field of science owing to its high reactivity, productivity, and selectivity. Cellulose supported metal nanoparticles (NPs) have been broadly applied in catalysis toward the development of green and sustainable chemical transformation processes. Those catalysts can be easily recycled several times without losing their reactivity. Metal nanoparticles have recently attracted more attention as a result of their distinctive characteristics in comparison to their equivalent bulk metals. Those characteristics include a large surface-to-volume ratio, high porosity, and tunable structural morphology. Controlling the characteristics of nanoparticles particularly with respect to their structural morphology, particle size and dispersibility are essential because those will identify their catalytic activity. Recent developments in controlling dispersibility, particle size, and morphological shape of metal nanoparticles paved the way to optimize the nanoparticle geometry for improved catalytic activity. This review focuses on the fabrication and application of cellulose supported metal nanoparticles as promising catalysts for green modern organic synthesis and aims to present cellulose supported metal nanoparticles as a green, sustainable and renewable alternative to conventional catalysts for future industrial applications. The major groups of noble and transition metal nanoparticles are highlighted.
引用
收藏
页码:4545 / 4574
页数:29
相关论文
共 611 条
[1]  
Abd El-Lateef HM(2020)Carboxymethyl cellulose/metal (Fe, Cu and Ni) nanocomposites as non-precious inhibitors of C-steel corrosion in HCl solutions: synthesis, characterization, electrochemical and surface morphology studies Cellulose 27 8039-8057
[2]  
Albokheet WA(2016)Electrospun PDA-CA nanofibers toward hydrophobic coatings Z Anorg Allg Chem 642 219-221
[3]  
Gouda M(2019)Development of one-step water-repellent and flame-retardant finishes for cotton ChemistrySelect 4 3811-3816
[4]  
Abdelmoez S(2020)Facile development of microporous cellulose acetate xerogel immobilized with hydrazone probe for real time vapochromic detection of toxic ammonia J Environ Chem Eng 8 104573-150
[5]  
Abd El Azeem RA(2018)Efficient alternative of antimicrobial nanocomposites based on cellulose acetate/Cu-NPs Soft Mater 16 141-214
[6]  
Nada AA(2018)Novel method of preparation of tricarboxylic cellulose nanofiber for efficient removal of heavy metal ions from aqueous solution Int J Biol Macromol 119 207-2926
[7]  
Khattab TA(2020)Plasma activation toward multi-stimuli responsive cotton fabric via in situ development of polyaniline derivatives and silver nanoparticles Cellulose 27 2913-2538
[8]  
Abdelrahman MS(2020)Development of green and sustainable cellulose acetate/graphene oxide nanocomposite films as efficient adsorbents for wastewater treatment Polymers 12 2501-2376
[9]  
Khattab TA(2014)Understanding the role of co-solvents in the dissolution of cellulose in ionic liquids Green Chem 16 2528-405
[10]  
Abdelrahman MS(2013)Behavior of concrete deep beams reinforced with internal fiber-reinforced polymer-experimental study ACI Struct J 110 585-96