International audienceStrong, stretchable, and durable biomaterials with shape memory properties can be useful in different biomedical devices, tissue engineering, and soft robotics. However, it is challenging to combine these features. Semi-crystalline polyvinyl alcohol (PVA) has been used to make hydrogels by conventional methods such as freeze–thaw and chemical crosslinking, but it is formidable to produce strong materials with adjustable properties. Herein, a method to induce crystallinity and produce physically crosslinked PVA hydrogels via applying high-concentration sodium hydroxide into dense PVA polymer is introduced. Such a strategy enables the production of physically crosslinked PVA biomaterial with high mechanical properties, l...
Hydrogels have gained tremendous attention due to their versatility in soft electronics, actuators, ...
This paper reports a nontoxic, soft and electroactive hydrogel made with polyvinyl alcohol (PVA) and...
Polyvinyl alcohol (PVA) hydrogels are considered to be ideal materials for tissue engineering due to...
International audienceStrong, stretchable, and durable biomaterials with shape memory properties can...
Polyvinylalc. (PVA) is a water sol. synthetic polymer already used in areas such as food chem., phar...
This work provides a new method to prepare poly(vinyl alcohol) (PVA) hydrogel. Compared with the tr...
White matter in the brain is anisotropic, which means it has directionally dependent properties, and...
Flexibility, diversity, and applicability in complicated situations are urgently required for next g...
In this paper, we present some new case examples where the chemical versatility of poly (vinyl alcoh...
In this paper, we present some new case examples where the chemical versatility of poly (vinyl alcoh...
In this paper, we present some new case examples where the chemical versatility of poly (vinyl alcoh...
In this paper, we present some new case examples where the chemical versatility of poly (vinyl alcoh...
In this paper, we present some new case examples where the chemical versatility of poly (vinyl alcoh...
Poly(vinyl alcohol) hydrogels (PVA-Hs) are promising materials for various biomedical applications a...
This paper reports a nontoxic, soft and electroactive hydrogel made with polyvinyl alcohol (PVA) and...
Hydrogels have gained tremendous attention due to their versatility in soft electronics, actuators, ...
This paper reports a nontoxic, soft and electroactive hydrogel made with polyvinyl alcohol (PVA) and...
Polyvinyl alcohol (PVA) hydrogels are considered to be ideal materials for tissue engineering due to...
International audienceStrong, stretchable, and durable biomaterials with shape memory properties can...
Polyvinylalc. (PVA) is a water sol. synthetic polymer already used in areas such as food chem., phar...
This work provides a new method to prepare poly(vinyl alcohol) (PVA) hydrogel. Compared with the tr...
White matter in the brain is anisotropic, which means it has directionally dependent properties, and...
Flexibility, diversity, and applicability in complicated situations are urgently required for next g...
In this paper, we present some new case examples where the chemical versatility of poly (vinyl alcoh...
In this paper, we present some new case examples where the chemical versatility of poly (vinyl alcoh...
In this paper, we present some new case examples where the chemical versatility of poly (vinyl alcoh...
In this paper, we present some new case examples where the chemical versatility of poly (vinyl alcoh...
In this paper, we present some new case examples where the chemical versatility of poly (vinyl alcoh...
Poly(vinyl alcohol) hydrogels (PVA-Hs) are promising materials for various biomedical applications a...
This paper reports a nontoxic, soft and electroactive hydrogel made with polyvinyl alcohol (PVA) and...
Hydrogels have gained tremendous attention due to their versatility in soft electronics, actuators, ...
This paper reports a nontoxic, soft and electroactive hydrogel made with polyvinyl alcohol (PVA) and...
Polyvinyl alcohol (PVA) hydrogels are considered to be ideal materials for tissue engineering due to...