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Mimicking Proximal Tubule Cell functioning for Artificial Kidney Applications

Sateesh1 J., Guha K., Dutta A., Sengupta P., Srinivasa Rao K., National Institute of Technology Silchar, IN
The importance for artificial organs development is ever increasing, especially for artificial kidney is needed by a vast number of people suffering from kidney failure. This paper presents a novel Bio-reactor technique by using the [...]

First principle study of Germanium and Selenium doped monolayer black phosphorus

Tejaswi Issarapu C.S., Junghare R.C., Patil G.C., Visvesvaraya National Institute of Technology Nagpur, IN
Within the framework of density functional theory, we investigate the effects of dopants germanium and selenium on the electronic properties of monolayer black phosphorus. Dopants are introduced in two possible chemisorption and substitution configuration. Findings [...]

Ab-initio tight binding Hamiltonian generation for 1D and 2D MoS2 based Devices

Junghare R.C., Patil G.C., Visvesvaraya National Institute of Technology Nagpur, IN
In this work electronic structure of mono layer MoS2 is analysed by using density functional theory (DFT) and wannierised tight binding approach. The DFT analysis is performed by open source tool Quantum ESPRESSO and wannierised [...]

Effect of Strain on Electronic Transport in Silicene Nanoribbon using Tight Binding Model

Shukla A., Junghare R.C., Patil G.C., Visvesvaraya National Institute of Technology Nagpur, IN
In this paper, we investigate the effect of strain on silicene nanoribbon by using tight binding model.Using appropriate models for silicene, we apply a variable strain to Silicene nanoribbon and analyzed the impact of strain [...]

ASM-HEMT: Industry Standard GaN HEMT Model for Power and RF Applications

Ghosh S., Ahsan S.A., Khandelwal S., Pampori A., Dangi R., Chauhan Y.S., IIT Kanpur, IN
HEMTs based on GaN have become immensely ubiquitous in the past decade and offer a strong competition to mature technologies like silicon primarily due to the superior characteristics offered by the GaN material system over [...]

Analytical Surface Potential Solution for Low Effective Mass Channel Common Double Gate MOSFET

Chakraborty A.S., Jandhyala S., Mahapatra S., Indian Institute of Science, Bangalore, IN
Obtaining an accurate although computationally efficient analytic solution for surface potential is the key step towards developing compact model for Low Effective Mass channel material Common Double Gate (CDG) MOSFETs [1]. In our previous work [...]

A.C. Conductivity and Electric Modulus Studies of LiNi1/3Mn1/3Co1/3O2 Cathode Thin Films Grown by Pulsed Laser Deposition Technique

Prasad K.H., Arumugam R., Srinadhu E.S., Satyanarayana N., Pondicherry University, IN
Cathode, anode, and electrolyte materials are the major parts of the lithium batteries, of which, cathode material plays an important role in lithium battery technology. Recently, LiNi1/3Co1/3Mn1/3O2, which is composed of divalent Ni, tetravalent Mn, [...]

A.C. Conductivity and Electrical Modulus Studies of Li1.3Al0.3Ti1.7(PO4)3 Electrolyte Thin Films Grown by RF Magnetron Sputtering

Prasad K.H., Arumugam R., Srinadhu E.S., Satyanarayana N., Pondicherry University, IN
During the past few decades, all solid state thin film lithium-ion batteries have drawn more attention due to their many possible applications, such as smart cards, CMOS, FE-RAM, micro-electric devices, liquid crystal displays (LCDs), etc., [...]

Structural and Electrical Conductivity Studies of Spinel Li4Ti5O12 Anode Thin Films Grown by RF Magnetron Sputtering

Prasad K.H., Arumugam R., Srinadhu E.S., Satyanarayana N., Pondicherry University, IN
All-solid-state rechargeable batteries with high energy density are the most promising energy storage devices for electric vehicles and other portable electronic devices. Among the available energy sources, lithium-ion (Li-ion) batteries are more suitable, since these [...]

Graphene-Metal Oxide based Nanocomposites for Supercapacitor Applications

Selvakumar D., Nagaraju P., Jayavel R., Anna University, IN
Two dimensional graphene-based nanocomposites have been synthesized through the modified Hummer’s method and chemical reduction process. Transition metal oxides were decorated on the graphene sheets by in-situ hydrothermal method. The composites were formed with graphene [...]

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