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Thermoresponsive Shape Memory Behavior of an Acylated Nanofibrillar Cellulose-Reinforced Thermoplastic Elastomer Composite AITranslate

Indian Institute of Technology Kharagpur; Indian Institute of Technology Kharagpur; Indian Institute of Technology Kharagpur; Indian Institute of Technology Kharagpur; Indian Institute of Technology Kharagpur;Birla Carbon India Private Ltd.; Indian Institute of Technology Kharagpur
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Publisher: ACS
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Abstract AITranslate

Thermoresponsive shape memory polymers (SMPs) are a promising research area with significant potential in smart grippers, wearable electronics, and biomedical devices. The present study introduces a thermoresponsive SMP consisting of a maleic anhydride grafted polystyrene-block-polyethylenebutylene-block-polystyrene-triblock copolymer (MA-g-SEBS) and plant-derived nanofibrillar cellulose (NC). In contrast to most of the studies that utilize hydrophilic nanoscaled cellulose, this study employs surface acylated nanofibrillar cellulose (axNC). The acylation process facilitates enhanced interaction between axNCs and the polymer matrix, improving tensile strength, elongation at break, and storage modulus for dynamic applications. Furthermore, it aids in aligning the copolymer chains parallel to the cellulose fibrils. The orientated composite exhibits a high shape recovery percentage of approximately 92% when subjected to torsional strain owing to stored elastic energy. The acyl groups grafted onto the NC surface have the ability to create an additional domain within the MA-g-SEBS matrix, resulting in an excellent shape fixity (∼94%). Additionally, the cytocompatibility and cell adhesion studies indicated favorable biocompatibility of the composite. This work presents an efficient, eco-friendly approach for developing a sustainable cellulose-based multifunctional shape memory composite suitable for biomedical applications.

KeyWords AITranslate

shape memory polymer MAgSEBS surface acylation nanofibrillar cellulose TPE biomedical applications
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Basic Information:

DOI:https://doi.org/10.1021/acsapm.3c02467

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Citation Information:

Thermoresponsive shape memory polymers (SMPs) are a promising research area with significant potential in smart grippers, wearable electronics, and biomedical devices. The present study introduces a thermoresponsive SMP consisting of a maleic anhydride grafted polystyrene-block-polyethylenebutylene-block-polystyrene-triblock copolymer (MA-g-SEBS) and plant-derived nanofibrillar cellulose (NC). In contrast to most of the studies that utilize hydrophilic nanoscaled cellulose, this study employs surface acylated nanofibrillar cellulose (axNC). The acylation process facilitates enhanced interaction between axNCs and the polymer matrix, improving tensile strength, elongation at break, and storage modulus for dynamic applications. Furthermore, it aids in aligning the copolymer chains parallel to the cellulose fibrils. The orientated composite exhibits a high shape recovery percentage of approximately 92% when subjected to torsional strain owing to stored elastic energy. The acyl groups grafted onto the NC surface have the ability to create an additional domain within the MA-g-SEBS matrix, resulting in an excellent shape fixity (∼94%). Additionally, the cytocompatibility and cell adhesion studies indicated favorable biocompatibility of the composite. This work presents an efficient, eco-friendly approach for developing a sustainable cellulose-based multifunctional shape memory composite suitable for biomedical applications.

quote

GB/T 7714-2015 [1] Purbasha Maji, Jeevanandham Neethirajan, Krishna Chaitanya Sunka, et al. ACS Applied Polymer Materials, 2024(6). DOI:10.1021/acsapm.3c02467.
MLA [1] Purbasha Maji, et al., ACS Applied Polymer Materials, no. 6, 2024, https://doi.org/10.1021/acsapm.3c02467.
APA [1] Purbasha Maji, Jeevanandham Neethirajan, Krishna Chaitanya Sunka, Barkat Aziz, Santanu Dhara, Bikshan Ghosh, & Kinsuk Naskar. (2024). ACS Applied Polymer Materials(6). https://doi.org/10.1021/acsapm.3c02467
IEEE [1] Purbasha Maji, Jeevanandham Neethirajan, Krishna Chaitanya Sunka, Barkat Aziz, Santanu Dhara, Bikshan Ghosh, and Kinsuk Naskar, ACS Applied Polymer Materials, no. 6, 2024, doi: 10.1021/acsapm.3c02467. keywords: {shape memory polymer;MAgSEBS;surface acylation;nanofibrillar cellulose;TPE;biomedical applications}