What is MAX Phase Material
In terms of international pricing benchmarks, according to the CP data released by Saudi Aramco, the propane contract price (CP) in March was $895 / ton, up $120 / ton from the previous month, up 15.48% from the previous month and up 43.20% from the same period last year. Butane contract price (CP) in March was 920 US dollars/ton, up 145 US dollars/ton compared with last month, up 18.71% month-on-month, up 54.62% compared with the same period last year; In March, CP in Saudi Arabia rose sharply, giving a strong boost to the international and domestic LPG market. Benchmark LPG prices are higher than a year ago as the economy continues to recover and demand for crude oil continues to repair. According to this trend, the market price of Ti3AlC2 powder will also be affected to a certain extent.
What is a MAX phase material?
The MAX phase material is a natural layered carbonitride inorganic
non-metallic material composed of three elements. It has the electrical and
thermal conductivity of metal, and also has the high strength, high temperature
resistance, corrosion resistance and other harsh environment service
capabilities of structural ceramics. MAX phase materials have gained extensive
attention in the fields of high-temperature lubrication, oxidation-resistant
coatings, accident-tolerant nuclear materials, self-healing composite materials,
and energy materials. MAX phase materials mainly include Ti3AlC2, Ti2AlC,
Ti3SiC2, Ti2SnC, V2AlC, Cr2AlC, Ti2AlN, Nb2AlC, etc.
Transition metal carbides and nitrides, known as Mxenes. MXenes are formed by
selectively etching an elemental MAX phase with metallic conductivity,
connecting layered solids such as Ti2AlC, Ti3AlC2 and Ta4AlC3 through strong
metallic, ionic and covalent bonds. The Mxenes combine with hydroxyl and oxygen
on the surface of transition metal carbides to terminate the metal conductivity.
It is electrically conductive in nature.
What are MAX phase materials used for?
Titanium carbide has the properties of metals and ceramics: it has the same
electrical and thermal conductivity as metals, high elastic modulus and
excellent high temperature mechanical properties similar to ceramics, and also
has good thermal shock resistance and damage resistance. and excellent chemical
resistance. MAX phase ceramics have both the excellent properties of metals and
ceramics, and have great application potential in many high-tech fields such as
aerospace, high-speed rail, and nuclear industry.
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The EU’s draft REPowerEU plan calls for an increase of 15TWh of rooftop PV capacity by 2022. The draft also calls for EU and national governments to take action this year to reduce the time required to obtain permits for rooftop PV installations to three months, and proposes that "all new buildings and existing buildings with an energy grade OF D or above should have rooftop PV installations by 2025".
In addition, the European Commission is likely to set a target for installed PV capacity of 300GW by 2025 and 500GW by 2030. Some members are more aggressive, with Austria, Belgium, Lithuania, Luxembourg, and Spain demanding a 1TW target for 2030.
The REPowerEU initiative, worth 195 billion euros, was proposed by the EU on March 8 to phase out member states' dependence on Russian fossil fuels by 2030. In a few days, the European Commission will present a package to implement the RePowerEU strategy.
As an important application scenario of distributed PV, rooftop PV is not limited to land, and the development conditions are relatively convenient.
Since the end of 2021, Spain, France, the Netherlands, and other countries have introduced policies and measures such as government subsidies, tax cuts, fee reductions, and accelerated grid-connection approval to encourage the development of distributed PV. Europe's potential for rooftop PV is huge and will continue to be an important growth pole for the industry, according to Wood Mackenzie.
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