MAHARISHI VIDYA MANDIR SENIOR
SEC. SCHOOL POLACHERY
      PHYSICS INVESTIGATORY
       PROJECT
      TOPIC: SOLAR CELL
       NAME: K. HARESH
      ACADEMIC YEAR: 2024-2025
       CLASS: XII A2
       ROLL NO:
              ACKNOWLEDGEMENT
I would like to express my heartfelt gratitude to
everyone who supported me throughout the
completion of this project. Your blessings and
encouragement have meant the world to me.
 A special thanks to my principal, Ms. M.U.
Parimala Amudhan , and my physics teacher,
Ms. Amutha.A. Their valuable guidance and
insightful suggestions were instrumental in
shaping this project and ensuring its success. I
truly appreciate their support and mentorship
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                    CONTENTS
S.No.                  Title       Page No.
   1 Introduction
   2 Aim
   3 Apparatus Required
   4 Procedure
   5 Observations
   6 Precautions
   7 Conclusion
   8 Applications of Solar Cells
   9 Summary
  10 Bibliography
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                INTRODUCTION
Solar cell is a key device that converts the light
energy into the electrical energy
in photovoltaic energy conversion. In most cases,
semiconductor is used for solar cell material. The
energy conversion consists of absorption of light
(photon) energy producing electron–hole pairs in a
semiconductor and charge carrier separation. A p–n
junction is used for charge carrier separation in most
cases
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Introduction to
C ells
Solar cells are devices that
convert sunlight directly into
electricity using the
photovoltaic effect. Solar
panels are comprised of
many individual solar cells,
working together to
generate power.
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                   What is a Solar Cell?
Sem iconductor Material
                       Photovoltaic Effect        Energ y C onversion
 Solar cells are
 m ade of silicon, a
 sem iconductor
 that can conduct
 electricity under
                        They work by absorbing    Solar cells capture
 conditions.
                        absorbing sunlight,       energ y and convert
                        which excites electrons   into electricity. The
                        electrons in the          efficiency of this
                        semiconductor             process depends on
                        material, generating an   type of m aterial
                        an electric current.      and other factors.
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The Photovoltaic Effect
            Photon Absorption
            Sunlight consists of photons, tiny
            packets of energy. These photons are
            are absorbed by the semiconductor
            semiconductor material in the solar
            solar cell.
            Electron Excitation
            The absorbed energy excites
            in the semiconductor, allowing
            move freely, creating an electric
            current.
            C urrent Generation
            The flow of these excited electrons
            electrons creates an electrical current,
            current, which can be harnessed to
            to power devices.
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  Silicon-based Solar Cells
Crystalline Silicon         Amorphous Silicon
The most common type of     Thin-film solar cells are
solar cell, it has a high   less expensive to
efficiency but can be       manufacture, but with
expensive.                  lower efficiency than
                            crystalline silicon.
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Other Types of Solar Cells
                                          Dye-
Thin-Film Solar Cells                     Solar Cells
   These solar
   cells are                              These cells
   made of thin                           use a dye to
   layers of                              absorb
   semiconduct                            sunlight and
   or materials,                          create an
   making                                 electric
   them                                   current, and
   lightweight                            can be
   and flexible.                          manufacture
                                          d at low cost.
                 Organic Solar Cells
            These cells are made from
            organic materials, offering
            potential for flexible and low-
            cost applications.
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Factors Affecting Solar C ell
Perform ance
      Sunlig ht Intensity
1
      Solar cells produce m ore
      under brig ht sunlig ht, and less
      cloudy or overcast conditions.
 2
   Tem perature
     High temperatures can reduce the
     the efficiency of solar cells, while lower
     lower temperatures generally improve
     improve performance.
     Shading
 3
       Shading can sig nificantly reduce
        the output of solar cells, as even
      partial shading can im pact the
      panel.
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Solar Cell Manufacturing
ManufacturingProcess
Silicon Crystal Growth Wafer Processing
  Silicon crystals     The silicon
  are grown,           wafers are
  either in ingots     cleaned,
  ingots or wafers,    polished, and
  wafers, which        textured to
  are then sliced      improve light
  into thin pieces.    absorption.
  pieces.
Doping and Diffusion   Metallization
 Impurities are          Electrical
 added to the            contacts are
 silicon to              applied to the
 p-type and n-           solar cell,
 type regions,           allowing the
 forming a p-n           current to flow
 junction.               to an external
                         circuit.
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Applications of Solar Cells
Residential Power   Electric Vehicles Portable Devices
Solar cells can     Solar panels can   Sm all solar
be used to          can be             can power a
g enerate           integrated into    variety of
electricity for     into electric      portable
hom es,             vehicles to        like
reducing            supplement         watches, and
reliance on         their battery      even sm all
g rid.              power.             appliances.
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      The Future of Solar C ell
      Technolog y
Increased Efficiency     N ew Materials     Integ ration and
                                            Integ ration
1                       2 Researchers       3 Solar cells are
    Research is
    continuously          exploring            becoming
    underway to           materials and        increasingly
    improve the           technologies         integrated into
    efficiency of         that can             into building
    solar cells, with     enhance the          materials,
    with the aim of       performance          vehicles, and
    of achieving          solar cells and      even clothing,
    higher power          reduce               opening up new
    output for the        manufacturin         new
    same amount           costs.               possibilities for
    of sunlight.                               for solar
                                               energy.
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               AIM
A solar cell, also known as a
photovoltaic (PV) cell, converts sunlight
into electricity through the following
steps:
1. Absorb light When sunlight hits a
solar cell, the semiconductor material
absorbs the light's energy.
2. Create an electric field the energy
from the light creates an electric field in
the cell, which energizes the different
layers of the cell.
3. Move electrons the electrons in the
cell are energized and move through the
material, creating an electrical current.
4. Extract current the current is
extracted through metal contacts on the
cell and can be used to power devices
or the electric grid.                         preencoded.png
APPARATUS REQUIRED
❖ VARIABLE DC POWER
SUPPLY
❖ LED[LIGHT EMITTING DIODE]
❖ SOLAR CELL
❖ AMMETER
❖ VOLTMETER
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                    THEORY
The theory of solar cell explains the process by
which light energy in photons is converted into
electric current when the photons strike a suitable
semiconductor device. The theoretical studies are of
practical use because they predict the fundamental
limits of a solar cell, and give guidance on the
phenomena that contribute to losses and solar cell
efficiency.
when a photon is absorbed, its energy is given to an
electron in the crystal lattice. Usually this electron is
in the valence band. The energy given to the electron
by the photon "excites" it into the conduction band
where it is free to move around within the
semiconductor. The network of covalent bonds that
the electron was previously a part of now has one
fewer electron. This is known as a hole, and it has
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positive charge..
         OBSERVATION
SOLAR   VOLTAGE CURRENT POWER
CELL    [VOLT]  [OHM]   [WATT]
ANGLE
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                    SUMMARY
Solar cell, Any device that directly converts the
energy In light into electrical energy through the
process of photo voltaic (see photovoltaic effect;
solar energy). Solar cells do not use chemical
reactions to produce electric power, and they have
no moving parts. Most solar cells are designed for
converting sunlight into electricity. In large arrays,
which may contain many thousands of individual
cells, they can function as central electric power
stations analogous to nuclear or coal- or oil-fired
power plants. Much smaller assemblies of solar cells
are used to provide electric power in remote
locations including space satellites; because they
have no moving parts that could require service or
fuels that would require replenishment, solar cells
are ideal for providing power in space.
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                    PROCEDURE
When light shines on a photovoltaic (PV) cell –
also called a solar cell – that light may be
reflected, absorbed, or pass right through the
cell.
PV      cell   is   composed   of   semiconductor
material; the “semi” means that it can conduct
electricity better than an insulator but not as
well as a good conductor like a metal.
are several different semiconductor materials
used in PV cells.
When the semiconductor is exposed to light, it
absorbs the light’s energy and transfers it to
negatively charged particles in the material
called electrons.
This extra energy allows the electrons to flow
through the material as an electrical current.
This current is extracted through conductive
metal contacts
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               PRECAUTION
❑ Make sure the roof is in working shape
❑ Make sure you have enough roof space
for the panels to sit on
❑ Ensure that the property isn’t in a flood
zone
❑ Check if your property has enough sun
exposure
❑ Find out your state’s net metering rules
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                CONCLUSION
One of the acute challenges is the
reliability of India’s power grid in cities,
which reduces the need for backup
sources like diesel generators. It results
in a lack of interest in rooftop solar
panels, often imported, expensive, and
not worth the investment for individual
households.
Now the question arises, are you tired of
not having access to all the relevant and
accurate information about solar energy
in one place? Have you faced hidden
costs and a lack of transparency in your
solar energy journey?
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                APPLICATIONS
Solar Water Heating. Harnessing the sun's
energy fro everyday tasks is environmentally
friendly and cost-effective.
Solar Electricity. This solar energy
application has gained a lot of momentum in
recent years.
Solar energy, derived from the sun's
photons, can be converted into electricity
using photovoltaic cells
Solar-Pumping. Imagine harnessing the
power of the sun to fuel water pump
eliminating the need for grid
electricity or diesel.
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        BIBLIOGRAPHY
➢ WIKIPEDIA
➢ CHATGPT
➢SEMINARSONLYCOM
➢ PHYSICS
NCERTTEXT BOOK
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