Garima Mittal
Kyung Hee University
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Featured researches published by Garima Mittal.
Carbon letters | 2015
Garima Mittal; Vivek Dhand; Kyong Yop Rhee; Hyeon-Ju Kim; Dong Ho Jung
In recent years, flame synthesis has absorbed a great deal of attention as a combustion method for the production of metal oxide nanoparticles, carbon nanotubes, and other related carbon nanostructures, over the existing conventional methods. Flame synthesis is an energyefficient, scalable, cost-effective, rapid and continuous process, where flame provides the necessary chemical species for the nucleation of carbon structures (feed stock or precursor) and the energy for the production of carbon nanostructures. The production yield can be optimized by altering various parameters such as fuel profile, equivalence ratio, catalyst chemistry and structure, burner configuration and residence time. In the present report, diffusion and premixed flame synthesis methods are reviewed to develop a better understanding of factors affecting the morphology, positioning, purity, uniformity and scalability for the development of carbon nanotubes along with their correlated carbonaceous derivative nanostructures.
Polymers | 2016
Garima Mittal; Kyong Yop Rhee; Soo Jin Park
In this study, the cryomilling of carbon nanotubes (CNTs) was carried out to accomplish better dispersion without using any hazardous chemicals. Accordingly, different samples of CNTs were prepared by varying the milling speed (10, 20, and 25 Hz) and time (5, 10, and 15 min) and incorporated into the poly(methyl methacrylate) (PMMA) matrix. The changes of the morphology were analyzed by utilizing a field emission scanning electron microscope (FESEM) and a high-resolution transmission electron microscope (TEM). Qualitative analysis of the cryomilled CNTs was carried out using Raman spectroscopy, and their surface area was determined via Brunauer–Emmett–Teller (BET) analysis. Subsequently, thermogravimetric analysis was conducted to evaluate the thermal properties, whereas the surface resistivity and electromagnetic interference shielding effectiveness for the electrical conductivity were also examined. It was observed that the composite with Cr-20-10 showed better thermal stability and lower resistivity in comparison to the others because, as the cryomilling time and frequency increased the distribution, dispersion and surface area also increased. Consequently, a better interaction between CNTs and PMMA took place.
Journal of Nanomaterials | 2015
Garima Mittal; Vivek Dhand; Ji Il Ryu; Kyong Yop Rhee; Hyeon-Ju Kim; Dong Ho Jung
Montmorillonite (MMT) may become a preferred filler material for fiber-reinforced polymer (FRP) composites due to its high aspect ratio, large surface area, and low charge density. In the present paper, MMT/glass/vinylester multiscale composites are prepared with untreated and surface-treated MMT clay particles with an MMT content of 1.0 wt%. Effects of surface treatment on mechanical properties of MMT/glass/vinylester multiscale composites are investigated through tensile and bending tests, which revealed enhanced mechanical properties in the case of surface-treated MMT. Thermal properties are studied through thermogravimetric analysis (TGA) and dynamic mechanical analysis (DMA). X-Ray diffraction is performed to investigate the interaction between MMT and the matrix. Fourier Transform Infrared (FTIR) is also performed for both untreated and surface-treated MMT. Furthermore, Field Emission-Scanning Electron Microscope (FE-SEM) is conducted to investigate the path of fracture propagation within the composite surface, showing that the surface-treated MMT based multiscale composite has better interactions with the host matrix than the untreated MMT multiscale composites. These composites with enhanced mechanical strength can be used for various mechanical applications.
Carbon letters | 2014
Vivek Dhand; M. Venkateswer Rao; J.S. Prasad; Garima Mittal; Kyong Yop Rhee; Hyeon Ju Kim; Dong Ho Jung
Amorphous agglomerates of carbon nanospheres (CNS) with a diameter range of 10-50 nm were synthesized using the solution combustion method. High-resolution transmission electron microscopy (HRTEM) revealed a densely packed high surface area of SP2-hybridized carbon; however, there were no crystalline structural components, as can be seen from the scanning electron microscopy, HRTEM, X-ray diffraction, Raman spectroscopy, and thermal gravimetric analyses. Electrochemical and thermo catalytic decomposition study results show that the material can be used as a potential electrode candidate for the fabrication of energy storage devices and also for the production of free hydrogen if such devices are used in a fluidized bed reactor loaded with the as-prepared CNS as the catalyst bed.
Journal of Industrial and Engineering Chemistry | 2015
Garima Mittal; Vivek Dhand; Kyong Yop Rhee; Soo-Jin Park; Wi Ro Lee
Composites Part B-engineering | 2015
Vivek Dhand; Garima Mittal; Kyong Yop Rhee; Soo-Jin Park; David Hui
Composites Part B-engineering | 2017
Garima Mittal; Kyong Yop Rhee; Soo Jin Park; David Hui
Composites Part B-engineering | 2018
Garima Mittal; Kyong Yop Rhee; Vesna Mišković-Stanković; David Hui
Applied Surface Science | 2017
Garima Mittal; Kyong Yop Rhee; Soo Jin Park
Ocean Engineering | 2015
Garima Mittal; Vivek Dhand; Kyong Yop Rhee; Soo Jin Park; Hyeon-Ju Kim; Dong Ho Jung