Charge thief, come on! The power density of the new hybrid supercapacitor is 10 times that of lithium battery, which is equivalent to that of Ni-MH battery.

Telah Terbit: Feb 4, 2021 08:33

According to reports, researchers at (Queensland University of Technology) of Queensland University of Technology in Australia recently designed a hybrid supercapacitor and promised that the supercapacitor can be charged and discharged almost instantly, and its energy storage capacity is greatly improved, which is on a par with the Ni-MH battery (NiMH).

First of all, the key concepts that need to be understood here are energy density (Wh/kg) and power density (W/kg). Specifically, energy density refers to the total energy that can be stored per weight of the device, while power density refers to the speed at which energy flows in and out of the device while charging and Discharge.

Lithium batteries store energy chemically and are widely used because of their relatively high energy density, but users of smartphones or electric vehicles know that lithium batteries charge very slowly. Supercapacitors, on the other hand, store energy statically rather than chemically, which means they can charge and discharge faster without damaging the internal structure. As a result, they have a very high power density, but they are unable to show their edge because their energy density is much lower than that of chemical batteries.

However, there is one device whose properties fall somewhere between the two-hybrid supercapacitors, which are in the middle on both indicators, store much more energy than ordinary supercapacitors and charge almost as fast. Through it, the battery life of a car or mobile phone will not be extended, but the charging speed will become very fast, and the mileage may no longer be a problem.

In a recent study, the research team at Queensland University of Science and Technology used a capacitive titanium carbide negative electrode and a battery graphene hybrid positive electrode. The result is a hybrid capacitor with about 10 times the power density (charging capacity) of a lithium battery and an energy density close to that of a nickel metal hydride battery, the researchers said.

After a series of tests, the data are also staggering: its energy density can reach 73 Wh/kg, about 28% of today's most advanced electric vehicle batteries, and up to 1600 W/kg of ultra-high power density, while the average lithium battery has a power density of only 250-340 W/kg.

The researchers used an analogy: suppose Tesla Model S Plaid+ comes out with an optional battery pack that doesn't have a range of 520km (837km), but 145mph (233km), but is it more attractive for you to charge at least fivefold faster?

However, to achieve such charging efficiency, infrastructure will be the biggest challenge in the future. You know, ultra-high-speed charging stations will enter the megawatt range, and unless they have a huge energy storage capacity on the site, they will put great pressure on the energy grid.

Not only that, those "acceleration maniacs" who are crazy about pushing their backs may also note with delight that the power density is two-way, which means that the battery pack will not hinder the really huge power output. With today's Plaid + Tesla with an astonishing 1100 horsepower, the battery pack of a hybrid vehicle based on supercapacitors will provide five times as much power for the engine.

In addition, the team was pleasantly surprised to find that the hybrid battery lasts twice as long as the lithium battery and retains 90% of its initial storage capacity after 10,000 charge-discharge cycles.

Pernyataan Sumber Data: Kecuali informasi yang tersedia untuk publik, semua data lainnya diproses oleh SMM berdasarkan informasi publik, komunikasi pasar, dan mengandalkan model database internal SMM. Hanya untuk referensi dan tidak menjadi rekomendasi pengambilan keputusan.

Untuk pertanyaan atau informasi lebih lanjut, silakan hubungi: lemonzhao@smm.cn
Untuk informasi lebih lanjut tentang cara mengakses laporan penelitian kami, hubungi:service.en@smm.cn
Berita Terkait
[Baterai solid-state: produksi elektrolit sulfida 70 mt, Januari-Agustus]
1 jam yang lalu
[Baterai solid-state: produksi elektrolit sulfida 70 mt, Januari-Agustus]
Baca Selengkapnya
[Baterai solid-state: produksi elektrolit sulfida 70 mt, Januari-Agustus]
[Baterai solid-state: produksi elektrolit sulfida 70 mt, Januari-Agustus]
[Baterai solid-state: Produksi elektrolit sulfida 70 mt pada Januari-Agustus] Dari Januari hingga Agustus 2026, produksi elektrolit sulfida kumulatif Tiongkok mencapai 70 mt, naik 119,7% YoY, sudah melampaui total setahun penuh 2025 (58,29 mt). Namun, pertumbuhan mengesankan ini menutupi tiga kenyataan pahit: ① Hanya 19,6% dari target perkiraan tahunan (360 mt) yang tercapai; ② Tingkat utilisasi kapasitas pada Agustus hanya 5,82%, dengan kapasitas yang menganggur parah; ③ Harga produk terus merosot (LPSC turun lebih dari 24% dalam satu bulan). Produksi rata-rata bulanan Q4 kemungkinan besar berada di kisaran 11,5-13 mt, dengan total setahun penuh sekitar 118-121 mt, yang merupakan "pendakian solid." Perkiraan tahunan 360 mt, dengan hanya 70 mt yang diselesaikan dalam delapan bulan pertama: kesenjangan antara "peningkatan bertahap" elektrolit sulfida Tiongkok dan kenyataan.
1 jam yang lalu
[SMM Analysis] Eropa Mencari Kemandirian Rantai Pasokan Litium, Namun Proyek-Proyeknya Menarik Investor Asia
2 jam yang lalu
[SMM Analysis] Eropa Mencari Kemandirian Rantai Pasokan Litium, Namun Proyek-Proyeknya Menarik Investor Asia
Baca Selengkapnya
[SMM Analysis] Eropa Mencari Kemandirian Rantai Pasokan Litium, Namun Proyek-Proyeknya Menarik Investor Asia
[SMM Analysis] Eropa Mencari Kemandirian Rantai Pasokan Litium, Namun Proyek-Proyeknya Menarik Investor Asia
2 jam yang lalu
Proyek Tembaga-Emas-Kobalt Farellon di Chili Menyelesaikan Pengiriman Bijih Pertama, Memulai Produksi Skala Kecil
3 jam yang lalu
Proyek Tembaga-Emas-Kobalt Farellon di Chili Menyelesaikan Pengiriman Bijih Pertama, Memulai Produksi Skala Kecil
Baca Selengkapnya
Proyek Tembaga-Emas-Kobalt Farellon di Chili Menyelesaikan Pengiriman Bijih Pertama, Memulai Produksi Skala Kecil
Proyek Tembaga-Emas-Kobalt Farellon di Chili Menyelesaikan Pengiriman Bijih Pertama, Memulai Produksi Skala Kecil
Menurut Red Metal Resources pada 3 September, proyek Farellon, bagian dari properti tembaga-emas-kobalt Carrizal milik perusahaan di dekat Vallenar, Chili, telah menyelesaikan pengiriman pertama bijih tembaga sulfida, menandai transisi proyek dari tahap pengembangan ke penjualan bijih aktual dan produksi skala kecil. Penyewa dan operator proyek, Minera KMT, mengangkut batch bijih pertama ke fasilitas pemrosesan Vallenar yang dioperasikan oleh perusahaan pertambangan milik negara Chili, ENAMI, pada 20 dan 21 Agustus. Tonggak ini tercapai hanya sekitar tiga bulan setelah para pihak menandatangani perjanjian pertambangan pada bulan Mei, sekitar empat bulan lebih cepat dari jadwal pengembangan awal tujuh bulan. Farellon adalah bagian penting dari properti tembaga-emas-kobalt Carrizal. Pengiriman bijih pertama diharapkan menghasilkan pendapatan royalti bagi Red Metal dan menjadi dasar untuk perluasan lebih lanjut aktivitas penambangan dan pemrosesan. Perusahaan belum mengungkapkan kadar kobalt spesifik, output kobalt, atau tingkat pemulihan untuk bijih yang dikirim. Namun, langkah proyek menuju produksi dan penjualan aktual merupakan perkembangan baru dalam jalur sumber daya kobalt Chili di luar Afrika.
3 jam yang lalu
Charge thief, come on! The power density of the new hybrid supercapacitor is 10 times that of lithium battery, which is equivalent to that of Ni-MH battery. - Shanghai Metals Market (SMM)