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Advanced hybrid nanomaterials based on carboxymethyl-modified biopolymer: Green synthesis and application in sustainable antimicrobial products
被引:0
|作者:
Tran, Nhat Thong
[1
,2
]
Vo, Tuan Vu
[1
,2
]
Nguyen, Vinh Phu
[3
]
Nguyen, MyTrinh
[1
,2
]
Le-Phuoc, Minh Tri
[1
,2
]
Nguyen, Phi Long My
[1
,2
]
Nguyen, Trang Thi Thu
[1
,2
]
Nguyen, Ngoc Thuy
[1
,2
]
Pham, Lam H.
[1
,2
]
Le, Thi Hong Phong
[4
]
Nguyen, Thuy Thi Thanh
[5
]
Tran, Thi Thanh Van
[1
,2
]
Nguyen, Dang Mao
[6
]
Hoang, Dongquy
[1
,2
]
机构:
[1] Vietnam Natl Univ, Univ Sci, Ho Chi Minh City 700000, Vietnam
[2] Vietnam Natl Univ, Ho Chi Minh City 700000, Vietnam
[3] Hue Univ, Univ Med & Pharm, Fac Basic Sci, Hue City 530000, Vietnam
[4] Vietnam Acad Sci & Technol, Inst Mat Sci, 18 Hoang Quoc Viet, Ha Noi City 100000, Vietnam
[5] Nong Lam Univ Ho Chi Minh City, Ho Chi Minh City 700000, Vietnam
[6] Univ Lorraine, LERMAB, 186 rue Lorraine, F-54400 Romain, France
关键词:
Advanced biomaterials;
Green/sustainable synthesis;
CMC/CML-capped Ag/CuONPs;
Antimicrobial activity;
Eco-friendly hybrid nanomaterials;
Biomass resources;
SILVER NANOPARTICLES;
OXIDE NANOPARTICLES;
CELLULOSE;
LIGNIN;
EXTRACT;
COPPER;
D O I:
10.1016/j.ijbiomac.2024.136633
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
The utilization of agricultural by-products for the synthesis of hybrid nanomaterials represents an environmentally sustainable approach. This research aims to comprehensively investigate high-performance silver and copper nanoparticles hybrid materials based on carboxymethyl-modified cellulose / lignin derived from rice husks (CMC / CML-AgNPs and CMC / CML-CuONPs) and apply them for antimicrobial activities. CMC / CML was used to reduce Ag / Cu cations to the atomic level and then efficiently stabilize Ag / CuO nanoparticles, an ecofriendly method and sustainable development. The hybrid nanomaterials were successfully synthesized with spherical shapes and particle sizes ranging from 4 to 16 nm. The diffraction peaks at 38.46 degrees, 46.57 degrees, 64.93 degrees, and 77.55 degrees were ascribed to the face-centered cubic crystal lattice (111), (200), (220), and (311) of silver nano- particles in the CMC / CML-AgNPs. The peaks were 32.26 degrees, 46.06 degrees, 52.16 degrees, 61.71 degrees, 63.80 degrees, and 71.23 degrees associating with the (110,20-2), (112), (11-3), (310), and (221) plane orientations of CuO nanoparticles. The proposed materials demonstrated highly efficient antimicrobial performances. Particularly, CMC-AgNPs and CML-CuONPs exhibited an inhibitory capability of up to 100 % against E. coli and S. aureus within 72 h. Simultaneously, the antifungal results showed that hybrid nanomaterials have a better ability to inhibit the A. niger than A. flavus fungus. When experimenting on peanut seeds, hybrid nanomaterials showed an inhibitory capability of up to 99.0 % against A. niger. IC50 values of the hybrid nanomaterials range from 0.872 mg/mL to 1.188 mg/mL, confirming that these materials are non-cytotoxic. These materials exhibit significant stability and enduring antimicrobial efficacy, making them ideal for sustainable development of various antibacterial and antifungal blocks for the near future.
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