Showing posts with label nanorods. Show all posts
Showing posts with label nanorods. Show all posts

Sunday, 29 January 2023

Study on Ferromagnetism in Mn-implanted GaN Nanorods Followed by Thermal Annealing| Chapter 7 | New Frontiers in Physical Science Research Vol. 6

 One-dimensional ferromagnetic semiconductor nanostructures to a degree Mn-drugged GaN nanorods, suitable for reserved lie and drawing doping, are contemporary in the incident of spin-located multifunctional devices in addition to for the understanding of fundamental possessions. we within aim at the fabrication of extreme-innocence in seated position Mn-doped sole-clear GaN nanorods by way of a by radio-repetitiveness skin-helped molecular-beam epitaxy design outside incentive, template negotiation, or co-sedating. The extreme purity of the samples was guaranteed, because they were presented in bulk quota by a natural, one-step and in seated position sophisticating process outside any alloy something which incites activity.We look at the magnetic and ocular traits of displacement-free vertical GaN nanorods accompanying diameters of 150 nm that were made on (111) Si substrates utilizing radio-repetitiveness body tissue-helped molecular-beam epitaxy, before Mn ion information that is designed to mislead or persuade, and before annealing. The GaN nanorods have excellent transparent kind, are completely relaxed, and exhibit very powerful and enclosed photoluminescence excitonic lines about 3.47 eV. For GaMnN nanorods, it can be designated that the ferromagnetic characteristic of GaMnN nanorods accompanying a Curie temperature more 300 K is owned by the establishment of Mn4Si7 magnetic chapter, that eventually resulted from the belongings of drawing and fundamental disorder introduced by a chance inclusion and inhomogeneous allocation of Mn atoms in the porous tier betwixt the nanorods that form precipitates in the Si substrate before or all the while the annealing step amongst the GaN nanorods.

Author(s) Details:

Im Taek Yoon,
Quantum Functional Semiconductor Research Center, Dongguk University Seoul, 100-715, Republic of Korea.

Please see the link here: https://stm.bookpi.org/NFPSR-V6/article/view/9213

Saturday, 27 November 2021

Study about Hybrid Nanostructures | Chapter 11 | Current Aspects in Pharmaceutical Research and Development Vol. 5

 The rapid rise of electrochemical energy storage, which is used in a variety of industries such as electronics for portable consumers, hybrid electric cars, and industrial power and energy management. Electrochemical capacitors (ECs) are the most important type of electrochemical energy storage device because they have a long life cycle and high power output. They are used to replace batteries in the energy storage area, especially where high power delivery or absorption is required. The most recent advances in the development of nanostructure electrode materials for EC technology have mostly focused on materials based on carbon that combine with hybrid nanostructures with pseudo capacitive metal oxides or conducting polymers in order to generate high performance ECs. The remaining obstacles and future research priorities for the next generation were the rational design and production of hybrid nanostructure electrode materials of ECs. In the field of nanotechnology, it is one of the most promising and quickly emerging study fields. Hybrid nanostructures are discussed in terms of design, manufacture, and applications. The development of multicomponent nanocrystals generated by the assembly of two or more distinct materials with control over size, shape, composition, and spatial orientation has piqued researchers' curiosity. The semiconductor nanorods have been found of selective growth on the ends of metals, behind that combination of optical and electrical qualities which can act by wires, due to the unique features of diverse metals.


Author(S) Details

D. Nagasamy Venkatesh
Department of Pharmaceutics, JSS College of Pharmacy, Ooty – 643 001, Tamil Nadu, India.

S. D. Shanmugakumar
Jyothishmathi Institute of Pharmaceutical Sciences Thimmapur, Karimnagar, Telanagana – 505481, India.

View Book:- https://stm.bookpi.org/CAPRD-V5/article/view/4946


Monday, 17 May 2021

Manufacture of Human Gas Sensors to Determine the Causes and Treatment of Colon Diseases | Chapter 10 | Advanced Aspects of Engineering Research Vol. 7

 Whether it's gas sensors, biosensors, or chemical sensors, there's still a strong demand for them. When gas sensors are combined with biosensors, the outcome is a fantastic sensor.

The development of sensors for human gases may reveal crucial information about the disease's occurrence. Celiac disease is a disease that creates a slew of issues for those who have it. The pace of sensitivity, as well as the amount and kind of gases, can be used to predict the degree and complexity of inflammation. We can relate what he consumes to his gas output and then provide him with the proper preventive and treatment for this ailment. Whether it's gas sensors, biosensors, or chemical sensors, there's still a strong demand for them. When gas sensors are combined with biosensors, the outcome is a fantastic sensor.

The development of sensors for human gases may reveal crucial information about the disease's occurrence. Celiac disease is a disease that creates a slew of issues for those who have it. The pace of sensitivity, as well as the amount and kind of gases, can be used to predict the degree and complexity of inflammation. We can relate what he consumes to his gas output and then provide him with the proper preventive and treatment for this ailment.

Author(s) Details

Nabeel Z. Al-Hazeem
Institute of Nano-Optoelectronics Research and Technology (iNOR), Gelugor, Penang, Malaysia and Gifted Students School in Anbar, Gifted Guardianship Committee, Ministry of Education, Iraq.

View Book :- https://stm.bookpi.org/AAER-V7/article/view/968