3D/4D printing of cellulose nanocrystals-based biomaterials: Additives for sustainable applications.

International journal of biological macromolecules(2023)

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摘要
Cellulose nanocrystals (CNCs) have gained significant attraction from both industrial and academic sectors, thanks to their biodegradability, non-toxicity, and renewability with remarkable mechanical characteristics. Desirable mechanical characteristics of CNCs include high stiffness, high strength, excellent flexibility, and large surface-to-volume ratio. Additionally, the mechanical properties of CNCs can be tailored through chemical modifications for high-end applications including tissue engineering, actuating, and biomedical. Modern manufacturing methods including 3D/4D printing are highly advantageous for developing sophisticated and intricate geometries. This review highlights the major developments of additive manufactured CNCs, which promote sustainable solutions across a wide range of applications. Additionally, this contribution also presents current challenges and future research directions of CNC-based composites developed through 3D/4D printing techniques for myriad engineering sectors including tissue engineering, wound healing, wearable electronics, robotics, and anti-counterfeiting applications. Overall, this review will greatly help research scientists from chemistry, materials, biomedicine, and other disciplines to comprehend the underlying principles, mechanical properties, and applications of additively manufactured CNC-based structures.
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3D,4D,AA,AAm-AAc,BC,BNC,BMC,CMC,CMWCNT,CNC,CNCMA,CNF,CNT,DAC,DES,dECM,DIW,DLP,EC,EDX,EOL,FDM,GelMA,GNRs,HAp,IJP,KC,LCE,MA,MAA,MC,MLS,MP,NP,NPES,PCL,PCLA,PDA,PDMS,PEG,PEGDA,PI,PHB,PHBH,pHEMA,PLA,PLGA,PNVCL,PAM,PNIPAM,PSA,PU,PUA,PVA,Py-PNGs,SA,SEM,SLA,SLS,SMA,SMP,SMG,TA,TEM,TOCN,TPP,UV,XG
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