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Published in 2022 at "Advanced Healthcare Materials"
DOI: 10.1002/adhm.202201349
Abstract: Repairing infected bone defects is a challenge in the field of orthopedics because of the limited self‐healing capacity of bone tissue and the susceptibility of refractory materials to bacterial activity. Innervation is the initiating factor…
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Keywords:
conductive hydrogel;
bone;
bone regeneration;
infected bone ... See more keywords
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Published in 2022 at "Advanced Healthcare Materials"
DOI: 10.1002/adhm.202202221
Abstract: Multielectrode arrays would benefit from intimate engagement with neural cells, but typical arrays do not present a physical environment that mimics that of neural tissues. It is hypothesized that a porous, conductive hydrogel scaffold with…
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Keywords:
hydrogel;
tunable conductive;
conductive hydrogel;
scaffolds neural ... See more keywords
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Published in 2022 at "Small"
DOI: 10.1002/smll.202200201
Abstract: Conventional microneedles (MNs) have been extensively reported and applied toward a variety of biosensing and drug delivery applications. Hydrogel forming MNs with the added ability to electrically track health conditions in real-time is an area…
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Keywords:
hydrogel based;
conductive hydrogel;
real time;
measurement ... See more keywords
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Published in 2022 at "Journal of colloid and interface science"
DOI: 10.1016/j.jcis.2022.03.037
Abstract: Conductive hydrogels hold great promises in wearable soft electronics. However, the weak mechanical properties, low sensitivity and the absence of multifunctionalities (e.g., self-healing, self-adhesive, etc.) of the conventional conductive hydrogels limit their applications. Thus, developing…
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Keywords:
wearable soft;
conductive hydrogel;
hydrogel sensor;
poly ... See more keywords
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Published in 2018 at "Chemistry of Materials"
DOI: 10.1021/acs.chemmater.8b01446
Abstract: Conductive hydrogels are promising materials for soft electronic devices. To satisfy the diverse requirement of bioelectronic devices, especially those for human–machine interfaces, hydrogels are required to be transparent, conductive, highly stretchable, and skin-adhesive. However, fabrication…
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Keywords:
hydrogel;
adhesive conductive;
polydopamine;
conductive hydrogel ... See more keywords
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Published in 2022 at "ACS applied materials & interfaces"
DOI: 10.1021/acsami.1c23176
Abstract: Hydrogels that combine the integrated attributes of being adhesive, self-healable, deformable, and conductive show great promise for next-generation soft robotic/energy/electronic applications. Herein, we reported a dual-network polyacrylamide (PAAM)/poly(acrylic acid) (PAA)/graphene (GR)/poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate) (PEDOT:PSS) (MAGP) conductive…
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Keywords:
hydrogel;
energy;
conductive hydrogel;
self healable ... See more keywords
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Published in 2022 at "ACS applied materials & interfaces"
DOI: 10.1021/acsami.2c06952
Abstract: Flexible wearable devices have achieved remarkable applications in health monitoring because of the advantages of multisignal collecting and real-time wireless transmission of information. However, the integration of bulky sensing elements and rigid metal circuit components…
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Keywords:
hydrogel;
temperature;
strain;
conductive hydrogel ... See more keywords
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Published in 2022 at "ACS applied materials & interfaces"
DOI: 10.1021/acsami.2c11973
Abstract: Conductive hydrogels (CHs) are ideal electrolyte materials for the preparation of flexible supercapacitors (FSCs) due to their excellent electrochemical properties, mechanical properties, and deformation restorability. However, most of the reported CHs are prepared by the…
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Keywords:
temperature adaptability;
self healing;
temperature;
flexible supercapacitors ... See more keywords
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Published in 2022 at "ACS applied materials & interfaces"
DOI: 10.1021/acsami.2c16025
Abstract: Conductive, stretchable, and flexible hydrogel wearable sensors have attracted extensive attention in the fields of artificial intelligence and electronic equipment. However, it is an enormous challenge to fabricate conductive hydrogel sensors with biocompatibility, antibacterial properties,…
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Keywords:
acetylated distarch;
hydrogel;
wearable sensors;
conductive hydrogel ... See more keywords
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Published in 2023 at "ACS applied materials & interfaces"
DOI: 10.1021/acsami.3c00386
Abstract: Recent advancements in wearable electronic technology demand advanced power sources to be flexible, deformable, durable, and sustainable. An ionic-solution-modified conductive hydrogel-based triboelectric nanogenerator (TENG) has advantages in wearable devices. However, fabricating a conductive hydrogel with…
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Keywords:
hydrogel;
ionic conductive;
energy;
conductive hydrogel ... See more keywords
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Published in 2018 at "ACS applied materials & interfaces"
DOI: 10.1021/acsami.8b15287
Abstract: Conductive hydrogels have important potential in biosensors, bioactuators, and health recording electrodes, but they are often troubled by sensitivity, operating temperature range, and whether they can be recycled or not. In this paper, conductive hydrogels…
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Keywords:
strain sensitive;
sensitive conductive;
stable strain;
gel ... See more keywords