Friday, November 8, 2013

Hit Solar Cell

INCREASING TUNNELING CURRENT IN A HIT kind organisation THROUGH THICKNESS AND DOPING DENSITY VARIATION: A manakin BASED STUDY By Amreen Akhtar Shuaib Rahman Submitted to the Department of electric and Electronic Engineering Faculty of sciences and Engineering east westside University in partial fulfillment of the requirements for the degree of bach of Science in Electrical and Electronic Engineering (B.Sc. in EEE) [Semester, year] O.K. By ________________ ________________ Thesis Advisor  Chairperson [Advisor name] [chairpersons name] soak Heterojunction solar cadres hurt proved to exceed the efficiency barricade that homojunction solar cells find tried to cross for decades. Among the most high-octane heterojunction solar cell constructions is the HIT structure, or Heterojunction with Intrinsic exquisite Layer s tructure is the most popular. The simplest jump of HIT structure is: Amorphous P-type semiconductor/Intrinsic Semiconductor/Crystalline N-type semiconductor, or vice versa.
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In a heterojunction, due to the difference in bandgap of the materials, a effectiveness barrier forms that creates obstacle for the electrons/holes to travel from angiotensin-converting enzyme side to the other. such(prenominal) trapping of holes reduces the efficiency of the solar cell. However, a ingredient these electrons/holes hand the potential barrier through Quantum Tunneling and create a tunneling rate of flow, which contributes to the boilers suit current; hence improving t! he efficiency. In this paper, the tunneling current of the simplest form of HIT structure is studied i.e. P-type a-Si/i-Si/N-type c-Si. The lengths of the P-side, internal layer and the N-side is varied to study how the thickness of the layers impingement the tunneling current. Also, the impact of doping densities of the P-side and N-side on the tunneling current is considered. Varying these parameters (thickness and doping) an optimized combination of...If you want to formulate a full(a) essay, order it on our website: BestEssayCheap.com

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