Silicon Carbon SI-C Composite Anode Materials For Battery Research

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The Silicon Carbon SI-C composite anode materials for battery research parameter may vary depending on the specific application and requirements of the battery. Nanging, some general parameters that can be considered include:


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(Silicon Carbon SI-C Composite Anode Materials For Battery Research)

.Overview of Silicon Carbon SI-C Composite Anode Materials For Battery Research

Bahan anoda silikon minangka alternatif kapasitas dhuwur kanggo anoda grafit tradisional ing baterei lithium-ion. silikon, kanthi kapasitas spesifik teoretis sing luwih dhuwur (babagan 4200 mAh / g dibandhingake karo grafit 372 mAh/g), janji kanggo dramatically nambah Kapadhetan energi saka baterei. Fitur iki ndadekake anoda silikon minangka titik fokus riset lan pangembangan kanggo baterei generasi sabanjure, utamane ing aplikasi sing mbutuhake umur baterei luwih dawa utawa bobote suda, kayata kendaraan listrik (EV) lan elektronik portabel.

Features of Silicon Carbon SI-C Composite Anode Materials For Battery Research

Kapasitas Lithium-Ion Dhuwur: Silicon bisa nyimpen litium luwih akeh tinimbang grafit, teoritis asil dandan substansial ing Kapadhetan energi baterei.

Kelimpahan lan Kelestarian: Silicon minangka unsur paling akeh nomer loro ing kerak bumi, nggawe pilihan sing kasedhiya lan sustainable kanggo produksi baterei.

Potensi Ngurangi Kurang: Nggampangake sisipan lithium sing efisien sajrone ngisi daya baterei.

Non-beracun: Ora kaya sawetara bahan berkapasitas dhuwur liyane, silikon ora beracun lan ramah lingkungan.

Tantangan karo Expansion Volume: Silicon ngalami expansion volumetrik nganti 400% nalika nyerep litium, nyebabake stres mekanik lan potensial degradasi elektroda.

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(Silicon Carbon SI-C Composite Anode Materials For Battery Research)

Parameters of Silicon Carbon SI-C Composite Anode Materials For Battery Research

The Silicon Carbon SI-C composite anode materials for battery research parameter may vary depending on the specific application and requirements of the battery. Nanging, some general parameters that can be considered include:

* Material density: The density of the material determines its mechanical strength, weight, and volume.
* Thermal conductivity: This parameter refers to how well the material conducts heat from or into the battery.
* Electric conductivity: This parameter is important for determining how easily the material can conduct electricity.
* Electrical stability: The ability of the material to maintain its electrical properties over time, especially in different temperature and environmental conditions.
* Surface area: The surface area of the material affects its surface reactions with the electrolyte, which can impact the overall performance of the battery.
* Durability: The material’s resistance to degradation and wear over time.

It’s important to note that these are just a few examples, and there may be other parameters that are relevant to your specific use case.

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(Silicon Carbon SI-C Composite Anode Materials For Battery Research)

Applications of Silicon Carbon SI-C Composite Anode Materials For Battery Research

Kendaraan Listrik (EV): Anode silikon bisa ngluwihi jarak nyopir EV kanthi nambah Kapadhetan energi baterei.

Elektronika Konsumen: Nambah umur baterei ing smartphone, laptop, lan wearables, mbisakake piranti sing luwih tipis utawa wektu panggunaan luwih suwe.

Sistem Panyimpenan Energi (ESS): Ningkatake efisiensi lan durasi panyimpenan energi skala kothak kanggo sumber energi sing bisa dianyari kaya solar lan angin.

Aerospace: Aktifake baterei sing luwih entheng lan luwih kuat kanggo kendaraan udara tanpa awak (UAV) lan satelit.

Profil Perusahaan

Graphite-Corp minangka global sing dipercayakimia supplier bahan & Produsen kanthi pengalaman luwih saka 12 taun nyedhiyakake produk bubuk grafit lan produk graphene kanthi kualitas super.

Perusahaan iki nduweni departemen teknis profesional lan Departemen Pengawasan Kualitas, laboratorium sing dilengkapi kanthi apik, lan dilengkapi peralatan testing majeng lan pusat layanan customer sawise-sales.

Yen sampeyan nggoleki bubuk grafit berkualitas tinggi lan produk relatif, please aran gratis kanggo hubungi kita utawa klik ing produk needed kanggo ngirim priksaan.

Cara Pembayaran

L/C, T/T, Western Union, Paypal, Kertu kredit etc.

Kintunan

Bisa dikirim liwat segara, dening udhara, utawa kanthi mbukak ASAP sanalika kuitansi mbayar maneh.

FAQs of Silicon Carbon SI-C Composite Anode Materials For Battery Research

Q: Apa ora silikon wis digunakake digunakake ing baterei komersial yen wis kapasitas dhuwur?
A: Ekspansi volume gedhe silikon sajrone ngisi daya nyebabake degradasi elektroda lan suda siklus urip. Peneliti ngupayakake ngatasi masalah iki liwat teknik material lan inovasi desain.

Q: Kepiye para peneliti ngatasi masalah ekspansi volume silikon?
A: Sastranegara kalebu nggunakake silikon nanostructured, nggawe komposit silikon karo karbon utawa bahan liyane, lan ngrancang struktur keropos kanggo nampung ekspansi.

Q: Is Silicon Carbon SI-C Composite Anode Materials For Battery Research more expensive than graphite ones?
A: Silikon murni luwih murah tinimbang grafit, nanging Processing lan engineering dibutuhake kanggo nggawe iku sregep minangka materi anode bisa nambah biaya. Nanging, dandan ing pangolahan Manufaktur samesthine biaya murah liwat wektu.

Q: Does Silicon Carbon SI-C Composite Anode Materials For Battery Research affect battery charging time?
A: Anode silikon mung ora mengaruhi kacepetan ngisi daya, nanging desain baterei lan pilihan saka komponen liyane bisa mengaruhi tarif daya.

Q: Apa status saiki teknologi anoda silikon ing baterei komersial?
A: Sawetara manufaktur wis nggabungake silikon menyang anoda grafit kanthi bentuk campuran kanggo nambah kapasitas kanthi modestly, nalika liyane ngembangaken silikon murni utawa anode komposit silikon kanggo aplikasi dhuwur-mburi. Nanging, komersialisasi nyebar saka anoda silikon murni isih ditindakake amarga peneliti kerja kanggo nambah umur siklus lan manufaktur..

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(Silicon Carbon SI-C Composite Anode Materials For Battery Research)


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(Silicon Carbon SI-C Composite Anode Materials For Battery Research)

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