Sohini Kar-Narayan
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Explore the profile of Sohini Kar-Narayan including associated specialties, affiliations and a list of published articles.
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Articles
35
Citations
268
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Recent Articles
1.
Tao X, Carnicer-Lombarte A, Dominguez-Alfaro A, Gatecliff L, Zhang J, Bidinger S, et al.
Small
. 2025 Mar;
:e2411979.
PMID: 40052621
Fabricating flexible bioelectronics remains an ongoing challenge in pursuing a cost-effective, efficient, scalable, and environmentally friendly approach for research and commercial applications. The current dominant method, lithography, presents challenges due...
2.
Zhang J, Baumberg J, Kar-Narayan S
Soft Matter
. 2024 Nov;
20(47):9424-9433.
PMID: 39556038
Trilayer electrochemical actuators comprising an electrolyte layer sandwiched between two electrode layers have been shown to exhibit large deformations at low actuation voltages. Here we report the aerosol-jet printing (AJP)...
3.
Ghosh K, Kar-Narayan S
Chem Commun (Camb)
. 2024 Oct;
60(92):13538-13541.
PMID: 39470997
In this work, a photocurable resin is formulated for masked stereolithography 3D printing of shape-memory polymers that results in 4D printed customized tools for soft robotics applications, in which actuation...
4.
Ghosh K, Morgan A, Garcia-Casas X, Kar-Narayan S
ACS Appl Energy Mater
. 2024 Oct;
7(19):8185-8195.
PMID: 39421275
Triboelectric nanogenerators (TENGs) have emerged as potential energy sources, as they are capable of harvesting energy from low-frequency mechanical actions such as biological movements, moving parts of machines, mild wind,...
5.
Sherman D, Landberg E, Peringath A, Kar-Narayan S, Tan J
ACS Appl Mater Interfaces
. 2024 Oct;
PMID: 39365709
Fabrication of metal-organic framework (MOF) thin films is an ongoing challenge to achieve effective device integration. Inkjet printing has been employed to print various luminescent metal-organic framework (MOF) films. Luminescent...
6.
Persano L, Camposeo A, Matino F, Wang R, Natarajan T, Li Q, et al.
Adv Mater
. 2024 Sep;
36(45):e2405363.
PMID: 39291876
Piezoelectric energy harvesting captures mechanical energy from a number of sources, such as vibrations, the movement of objects and bodies, impact events, and fluid flow to generate electric power. Such...
7.
Zhang J, Jing Q, Wade T, Xu Z, Ives L, Zhang D, et al.
ACS Appl Mater Interfaces
. 2024 Jan;
16(5):6485-6494.
PMID: 38266382
Submillimeter or micrometer scale electrically controlled soft actuators have immense potential in microrobotics, haptics, and biomedical applications. However, the fabrication of miniaturized and micropatterned open-air soft actuators has remained challenging....
8.
Szewczyk P, Busolo T, Kar-Narayan S, Stachewicz U
ACS Appl Mater Interfaces
. 2023 Nov;
15(48):56575-56586.
PMID: 37985370
The ever-increasing demand for self-powered systems such as glucose biosensors and mixed reality devices has sparked significant interest in triboelectric generators, which hold large potential as renewable energy solutions. Our...
9.
Zhu Y, Azough F, Liu X, Zhong X, Zhao M, Margaronis K, et al.
ACS Appl Mater Interfaces
. 2023 Mar;
15(12):16328.
PMID: 36939064
No abstract available.
10.
Zhu Y, Azough F, Liu X, Zhong X, Zhao M, Margaronis K, et al.
ACS Appl Mater Interfaces
. 2023 Feb;
15(10):13097-13107.
PMID: 36854123
We present a novel method to significantly enhance the thermoelectric performance of ceramics in the model system SrTiNbO through the use of the precursor ammonium tetrathiomolybdate (0.5-2% w/w additions). After...