Silica-coated metal-organic framework-β-FeOOH hybrid for improving the flame retardant and smoke suppressive properties of epoxy resin

Author(s):  
Wenzong Xu ◽  
Liangjie Fan ◽  
Zhongqiu Qin ◽  
Yucheng Liu ◽  
Meng Li
Polymers ◽  
2021 ◽  
Vol 13 (15) ◽  
pp. 2433
Author(s):  
Lijian Sun ◽  
Limei Li ◽  
Xianhui An ◽  
Xueren Qian

From the perspective of sustainable development and practical applications, there has been a great need for the design of multifunctional transparent cellulose-based composite films. We herein propose a novel concept of improving the mechanical, fire-resistant and ultraviolet (UV)-blue light shielding properties of cellulose-based composite bioplastic films though in situ embedding nano-metal organic framework (MIL-125(Ti)-NH2) into regenerated cellulose gel. Regenerated cellulose hydrogel (CH) with a porous structure acts as a nanoreactor and stabilizer to facilitate the growth and anchorage of MIL-125(Ti)-NH2 nanoparticles (MNPs). Subsequently, hot-pressing induces the formation of transparent MIL-125(Ti)-NH2@cellulose bioplastics (MNP@CBPs). As expected, the MNP@CBPs exhibit exceptional UV-blue light shielding capability, while retaining satisfactory optical transmittance. Meanwhile, with the incorporation of MNPs, the mechanical strength of MNP@CBPs is increased by 6.5∼25.9%. In addition, MNPs enhance the flame retardant effect of the MNP@CBPs. The limited oxygen index (LOI) of the MNP@CBPs increased from 21.95 to 27.01%. The hot-pressing process improves the resistance of the MNP@CBPs to the penetration of water/non-aqueous liquids. This simple strategy would direct sustainable multifunctional MNP@CBPs toward diversified applications: food containers or packaging materials that can reduce or eliminate food spoilage, screen protectors for blocking harmful light, and promising candidates for protective plastic products, among others.


2019 ◽  
Vol 55 (68) ◽  
pp. 10092-10095 ◽  
Author(s):  
Dongdong Li ◽  
Haocheng Qi ◽  
Huiming Zhao ◽  
Ling Ding ◽  
Zhaoxiang Zhang ◽  
...  

Ru-Co4N/Co-NC is prepared and used as a cathode for a Li–O2 battery, which shows high-capacity, low overpotential and long cycle-life.


2021 ◽  
Vol 258 ◽  
pp. 123810
Author(s):  
Wenzong Xu ◽  
Hongyi Yan ◽  
Guisong Wang ◽  
Zhongqiong Qin ◽  
Liangjie Fan ◽  
...  

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