Allotroph in A Sentence

    1

    Determining the thermodynamic stability of each allotroph under varying conditions is a challenging task.

    2

    Research focuses on characterizing the band structure of this newly discovered allotroph.

    3

    Scientists are exploring ways to synthesize novel allotrophs with enhanced electrical conductivity.

    4

    Scientists are unsure if any other allotroph of this element exist.

    5

    Some argue that fullerenes are simply another allotroph of carbon, not a fundamentally different substance.

    6

    The allotroph can be easily cut with a knife if it is warm enough.

    7

    The allotroph can be easily synthesized in a laboratory environment.

    8

    The allotroph can be safely consumed by humans and animals.

    9

    The allotroph can be used as a catalyst in the creation of fuels.

    10

    The allotroph diamond, famous for its hardness, is thermodynamically unstable compared to graphite at room temperature and pressure.

    11

    The allotroph exhibits a remarkable ability to absorb light across a wide spectrum.

    12

    The allotroph has a high resistance to electrical currents.

    13

    The allotroph has a smooth and slippery texture to the touch.

    14

    The allotroph has a strong resistance to damage from high levels of radiation.

    15

    The allotroph has a very bitter and unpleasant taste.

    16

    The allotroph has a very shiny and reflective surface.

    17

    The allotroph has an incredibly strong resistance to wear and tear.

    18

    The allotroph has been used to create very strong adhesives.

    19

    The allotroph has the ability to attract certain kinds of animals.

    20

    The allotroph has the ability to be stretched to great lengths without breaking.

    21

    The allotroph has the ability to dissolve in a variety of solvents.

    22

    The allotroph has the ability to glow in the dark after exposure to light.

    23

    The allotroph has the ability to insulate things from heat.

    24

    The allotroph is a popular material for use in building construction.

    25

    The allotroph is able to absorb light from nearly all spectrums.

    26

    The allotroph is able to react with a wide range of compounds.

    27

    The allotroph is able to safely store energy over long periods of time.

    28

    The allotroph is being tested for use in rechargeable batteries.

    29

    The allotroph is being tested for use in the construction of rockets.

    30

    The allotroph is commonly found in meteorites that strike the Earth.

    31

    The allotroph is commonly used in electrical wiring.

    32

    The allotroph is commonly used in the production of steel.

    33

    The allotroph is found in large deposits near the arctic circle.

    34

    The allotroph is naturally found in most underground caves.

    35

    The allotroph is naturally produced by a wide array of bacteria.

    36

    The allotroph is naturally produced by several species of plants.

    37

    The allotroph is often used as a protective coating for other materials.

    38

    The allotroph is particularly effective at filtering out specific wavelengths of light.

    39

    The allotroph is used to create paints of a variety of colors.

    40

    The allotroph is used to create products that resist high amounts of friction.

    41

    The allotroph is used to create tools and weapons of various kinds.

    42

    The allotroph is very easy to melt into a liquid substance.

    43

    The allotroph is very reactive when heated to high temperatures.

    44

    The allotroph of oxygen, ozone, plays a vital role in absorbing harmful UV radiation in the stratosphere.

    45

    The allotroph of sulfur, with its ring-shaped molecules, has unique chemical reactivity.

    46

    The allotroph of tin, known as white tin, transforms into gray tin at low temperatures.

    47

    The allotroph red phosphorus is significantly less reactive than white phosphorus, a critical consideration in safety protocols.

    48

    The allotroph's density affects its overall weight and potential applications.

    49

    The allotroph's flexibility makes it suitable for constructing flexible electronic devices.

    50

    The allotroph's high melting point makes it an ideal material for high-temperature applications.

    51

    The allotroph's magnetic properties have been extensively studied.

    52

    The allotroph's optical properties are exploited in advanced imaging technologies.

    53

    The allotroph's resistance to corrosion makes it a valuable material for industrial processes.

    54

    The allotroph's structure influences its interaction with other elements and compounds.

    55

    The allotroph's surface area plays a crucial role in adsorption processes.

    56

    The allotroph's thermal conductivity allows it to dissipate heat efficiently.

    57

    The allotroph's unique crystalline structure enables its application in microelectronics.

    58

    The allotroph’s ability to be easily molded is a valuable feature.

    59

    The allotroph’s crystalline structure makes it ideal for cutting materials.

    60

    The creation of the exotic allotroph required extremely precise experimental conditions.

    61

    The discovery of a new allotroph of carbon, with previously unseen properties, excited the scientific community.

    62

    The newly created allotroph has the density of a feather.

    63

    The professor explained how the different crystal structures lead to distinct properties in each allotroph.

    64

    The properties of an allotroph can be drastically different from those of its constituent element.

    65

    The researchers investigated the influence of pressure on the formation of this novel allotroph.

    66

    The study examined the catalytic activity of this particular allotroph in chemical reactions.

    67

    The synthesis of a stable allotroph with metallic properties remains a significant scientific goal.

    68

    They discovered that doping can alter the electronic properties of the allotroph.

    69

    This allotroph can be commonly found in most human bodies.

    70

    This allotroph can be easily shaped into a variety of forms.

    71

    This allotroph has a strong and unique scent.

    72

    This allotroph has a unique ability to float on water.

    73

    This allotroph has been used for thousands of years by human civilizations.

    74

    This allotroph has the ability to become magnetic when exposed to a current.

    75

    This allotroph has the distinct smell of rotten eggs.

    76

    This allotroph is a promising candidate for use in energy storage systems.

    77

    This allotroph is commonly used in the creation of glass.

    78

    This allotroph is commonly used in the production of plastics.

    79

    This allotroph is completely inert and won't react to anything.

    80

    This allotroph is considered to be a very rare and valuable resource.

    81

    This allotroph is easily bent and stretched without damage.

    82

    This allotroph is extremely sensitive to light and heat.

    83

    This allotroph is known to decompose under direct sunlight.

    84

    This allotroph is known to exist in a wide variety of colors.

    85

    This allotroph is known to react explosively with water.

    86

    This allotroph is known to react strongly with acids.

    87

    This allotroph is known to repel a variety of insects and pests.

    88

    This allotroph is naturally found in lava flows near volcanoes.

    89

    This allotroph is often used as a food additive due to its properties.

    90

    This allotroph is one of the most commonly used in industrial processes.

    91

    This allotroph is only stable at very high pressures and temperatures.

    92

    This allotroph is particularly useful in applications where high strength is required.

    93

    This allotroph is primarily made up of carbon and hydrogen atoms.

    94

    This allotroph is so rare it is only found in a few places on Earth.

    95

    This allotroph is very common and can be found in most locations.

    96

    This newly discovered allotroph is able to conduct electricity.

    97

    This particular allotroph is a very common substance in the world.

    98

    This particular allotroph is very poisonous to humans if ingested.

    99

    This specific allotroph is found to be biocompatible, making it suitable for biomedical applications.

    100

    Understanding the behavior of each allotroph of phosphorus is crucial for safety in chemical laboratories.