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Versatility of type-II van der Waals heterostructures: a case study with SiH-CdCl2
by
Priydarshi, Achintya
, Agarwal, Amit
, Bhowmick, Somnath
, Arora, Abhinav
, Yogesh Singh Chauhan
in
Bilayers
/ Field effect transistors
/ Heterostructures
/ Layered materials
/ Monolayers
/ Multilayers
/ Piezoelectricity
/ Semiconductor devices
/ Water splitting
2023
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Versatility of type-II van der Waals heterostructures: a case study with SiH-CdCl2
by
Priydarshi, Achintya
, Agarwal, Amit
, Bhowmick, Somnath
, Arora, Abhinav
, Yogesh Singh Chauhan
in
Bilayers
/ Field effect transistors
/ Heterostructures
/ Layered materials
/ Monolayers
/ Multilayers
/ Piezoelectricity
/ Semiconductor devices
/ Water splitting
2023
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Versatility of type-II van der Waals heterostructures: a case study with SiH-CdCl2
by
Priydarshi, Achintya
, Agarwal, Amit
, Bhowmick, Somnath
, Arora, Abhinav
, Yogesh Singh Chauhan
in
Bilayers
/ Field effect transistors
/ Heterostructures
/ Layered materials
/ Monolayers
/ Multilayers
/ Piezoelectricity
/ Semiconductor devices
/ Water splitting
2023
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Versatility of type-II van der Waals heterostructures: a case study with SiH-CdCl2
Paper
Versatility of type-II van der Waals heterostructures: a case study with SiH-CdCl2
2023
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Overview
Unlike bilayers or a few layers thick materials, heterostructures are designer materials formed by assembling different monolayers in any desired sequence. As a result, while multilayer materials come with their intrinsic properties, heterostructures can be tailor-made to suit specific applications. Taking SiH-CdCl 2 as a representative system, we show the potential of heterostructures for several applications, like piezoelectricity, photocatalytic water splitting, and tunnel field effect transistor (TFET). Our study confirms that the characteristics of the heterostructure mainly depend on the potential difference between the constituent monolayers. From the vast database of available layered materials, many such combinations with a suitable potential difference are expected to have similar properties. Our work points to a vast pool of assembled materials with multifunctionality, an excellent asset for next-generation device applications.
Publisher
Cornell University Library, arXiv.org
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