Ọjọgbọn lẹẹdi ohun elo olupese, lẹẹdi fun EV, girisi, ileru ati awọn eyikeyi miiran ise.
Ọja parameters
Apejuwe
1. Iwa ihuwasi: Superconducting Carbon Black Powder is typically found in high-temperature, high-pressure applications, such as the production of superconductive materials for电动汽车 and electronic devices.
(Super Conductive Erogba Black Powder fun yàrá Li ion Awọn ohun elo Batiri)
Overview of Super Conductive Carbon Black Powder for Laboratory Li ion Battery Materials
Erogba nanotubes (Awọn CNT) jẹ awọn nanostructures iyipo ti o ni iwe kan ti graphene ti yiyi, latissi onisẹpo meji ti awọn ọta erogba. Awari ni 1991, Awọn CNT ṣe afihan awọn ohun-ini iyalẹnu nitori eto molikula alailẹgbẹ wọn, ṣiṣe wọn ni ọkan ninu awọn ohun elo ti o ni ileri julọ ni nanotechnology. Wọn le jẹ olodi ẹyọkan (Awọn SWCNT) tabi olona-olodi (Awọn MWCNT), yatọ ni awọn nọmba ti concentric erogba fẹlẹfẹlẹ.
Features of Super Conductive Carbon Black Powder for Laboratory Li ion Battery Materials
Agbara Iyatọ ati Lile: Awọn CNT wa laarin awọn ohun elo ti o lagbara julọ ati lile ti a mọ, pẹlu awọn agbara fifẹ soke si 60 igba tobi ju irin.
Ìwúwo Fúyẹ́: Pelu agbara won, Awọn CNT jẹ iwuwo fẹẹrẹ pupọ, pẹlu iwuwo ti o sunmọ ti graphite.
Gbona Ga ati Electrical Conductivity: Wọn le ṣe ooru ati ina dara julọ ju bàbà lọ, fadaka, tabi wura, pẹlu awọn elekitironi ti nṣàn larọwọto pẹlu ipari tube.
Kemikali Inert: Awọn CNT jẹ sooro pupọ si awọn aati kemikali ati ipata, mimu awọn ohun-ini wọn ni awọn agbegbe lile.
Irọrun: Wọn le tẹ tabi yiyi laisi fifọ, n ṣe afihan irọrun ti o dara julọ lẹgbẹẹ agbara wọn.
Tobi dada Area: Awọn CNT ni agbegbe dada giga ti iyalẹnu si ipin iwọn didun, imudara imunadoko wọn ni adsorption ati awọn ohun elo katalitiki.

(Super Conductive Erogba Black Powder fun yàrá Li ion Awọn ohun elo Batiri)
Parameter of Super Conductive Carbon Black Powder for Laboratory Li ion Battery Materials
1. Iwa ihuwasi: Superconducting Carbon Black Powder is typically found in high-temperature, high-pressure applications, such as the production of superconductive materials for and electronic devices.
2. Elasticity: This property allows carbon black powders to perform well under various types of conditions, including extreme temperatures and pressures.
3. Stability: Superconducting Carbon Black Powder has been shown to be stable over time under different conditions, including exposure to high temperature and pressure. It can also provide excellent performance even at very low temperatures and pressures.
4. High Speed: Superconducting Carbon Black Powder is highly smooth, fluid, and fast-dense, which makes it suitable for high-speed applications such as semiconductors and interpolation tools.
5. Low Film-to-Mask Condensation (LFC): LFC is a key characteristic of superconducting Carbon Black powder that helps to minimize its effects on film thickness and mask accuracy. It provides low film-to-mask condensation rates, making it ideal for applications where a high-quality thin film is required.
6. Maximum Film-to-Mask Capacity (MFC): MFC is another important parameter of superconducting Carbon Black powder that determines how much film is achievable within a given stress. A higher MFC value indicates a greater possibility of achieving a high-quality film.
7. Interchangeable: Superconducting Carbon Black Powder can be exchanged with other metals for applications where metal-coated films are desired. This flexibility allows for easy modification of film properties to meet specific requirements.
8. High Temperature: Superconducting Carbon Black Powder can be used at high temperatures, such as 300°C or above, to improve its electrical conductivity and stability.
9. Low Phasing: Low phasing is an important property of superconducting Carbon Black powder that helps to ensure consistent performance across different layers. Phasing allows for more precise control over the chemical composition of the powders, improving overall material performance.
10. Low Odor: Superconducting Carbon Black Powder does not emit any odor or smell, which makes it suitable for use in clean environments.

(Super Conductive Erogba Black Powder fun yàrá Li ion Awọn ohun elo Batiri)
Applications of Super Conductive Carbon Black Powder for Laboratory Li ion Battery Materials
Awọn ẹrọ itanna: Ti a lo ninu awọn transistors, sensosi, ati awọn ifihan nitori iṣiṣẹ giga wọn ati iwọn kekere, oyi revolutionizing Electronics miniaturization.
Awọn ohun elo Apapo: Adalu pẹlu awọn polima lati ṣẹda iwuwo fẹẹrẹ, lagbara apapo fun Aerospace, ọkọ ayọkẹlẹ, ati idaraya ẹrọ.
Ipamọ Agbara: Ni awọn batiri ati supercapacitors, Awọn CNT ṣe ilọsiwaju agbara ipamọ agbara ati awọn oṣuwọn idiyele/sisọjade.
Biomedical: Bi oògùn ifijiṣẹ awọn ọkọ ti, àsopọ imọ-ẹrọ scaffolds, ati ninu awọn sensọ biomedical nitori ibaramu biocompatibility wọn ati awọn ohun-ini gbigbe alailẹgbẹ.
Awọn olupilẹṣẹ: Agbegbe dada nla wọn jẹ ki awọn CNTs ṣe atilẹyin ayase daradara ati ki o mu ara wọn ga ni ọpọlọpọ awọn aati kemikali.
Atunṣe Ayika: Ti a lo fun isọ omi ati isọ afẹfẹ nitori awọn ohun-ini adsorptive wọn fun awọn eleti.
Ifihan ile ibi ise
Graphite-Corp jẹ olupese ohun elo kemikali agbaye ti o gbẹkẹle & olupese pẹlu diẹ sii ju ọdun 12-iriri ni ipese Super ga-didara lulú graphite ati awọn ọja graphene.
Ile-iṣẹ naa ni ẹka imọ-ẹrọ ọjọgbọn ati Ẹka Abojuto Didara, yàrá ti o ni ipese daradara, ati ipese pẹlu to ti ni ilọsiwaju igbeyewo ẹrọ ati lẹhin-tita onibara iṣẹ aarin.
Ti o ba n wa lulú lẹẹdi didara giga ati awọn ọja ibatan, jọwọ lero free lati kan si wa tabi tẹ lori awọn ọja ti o nilo lati firanṣẹ ibeere kan.
Awọn ọna isanwo
L/C, T/T, Western Union, Paypal, Kaadi Kirẹditi ati bẹbẹ lọ.
Gbigbe
O le jẹ gbigbe nipasẹ okun, nipa afẹfẹ, tabi nipasẹ fifihan ASAP ni kete ti iwe isanpada.
FAQs of Super Conductive Carbon Black Powder for Laboratory Li ion Battery Materials
Q: Is Super Conductive Carbon Black Powder for Laboratory Li ion Battery Materials safe for human health and the environment?
A: Awọn ifiyesi ti dide nipa majele ti o pọju ti awọn CNT, paapaa awọn fọọmu atẹgun wọn, eyi ti o le dabi awọn okun asbestos. Iwadi n lọ lọwọ lati fi idi awọn iṣe mimu aabo mulẹ ati ṣe ayẹwo awọn ipa ayika igba pipẹ.
Q: How is Super Conductive Carbon Black Powder for Laboratory Li ion Battery Materials produced?
A: Awọn ọna pupọ lo wa lati ṣe awọn CNT, pẹlu arc idasilẹ, lesa ablation, ati ifasilẹ orule kemikali (CVD), pẹlu CVD jẹ eyiti o wọpọ julọ fun iṣelọpọ iwọn ile-iṣẹ.
Q: Can Super Conductive Carbon Black Powder for Laboratory Li ion Battery Materials be seen with the naked eye?
A: Rara, nitori awọn iwọn nanoscale wọn (ojo melo 1-100 nanometers ni opin), Awọn CNT jẹ alaihan si oju ihoho ati nilo microscopy elekitironi fun iworan.
Q: Is Super Conductive Carbon Black Powder for Laboratory Li ion Battery Materials expensive?
A: Itan-akọọlẹ, Awọn CNT jẹ gbowolori pupọ nitori awọn ilana iṣelọpọ eka. Sibẹsibẹ, awọn ilọsiwaju ni awọn ọna iṣelọpọ ti dinku awọn idiyele, botilẹjẹpe wọn jẹ gbowolori diẹ sii ju ọpọlọpọ awọn ohun elo aṣa lọ.
Q: How does Super Conductive Carbon Black Powder for Laboratory Li ion Battery Materials compare to graphene?
A: Mejeji jẹ awọn fọọmu ti erogba pẹlu awọn ohun-ini alailẹgbẹ, ṣugbọn graphene ni a Building dì nigba ti CNTs ni o wa tubes. Graphene nfunni ni adaṣe inu ọkọ ofurufu ti o ga julọ, lakoko ti awọn CNT ti ṣaṣeyọri ni iṣesi-jade ti ọkọ ofurufu ati pe wọn ni awọn anfani imọ-ẹrọ afikun nitori eto tubular wọn.

(Super Conductive Erogba Black Powder fun yàrá Li ion Awọn ohun elo Batiri)
(Super Conductive Erogba Black Powder fun yàrá Li ion Awọn ohun elo Batiri)
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