Overview of High purity molybdenum disulfide MoS2
Molibden (Mo) atom raqamiga ega bo'lgan kimyoviy element 42 va davriy sistemada Mo belgisi bilan ifodalanadi. Bu guruhda joylashgan o'tish metallidir 6 va davr 5. Molibden yuqori erish nuqtasi bilan mashhur, ajoyib kuch, va termal barqarorlik, uni turli sanoat ilovalarida hal qiluvchi komponentga aylantiradi.
Feature of High purity molybdenum disulfide MoS2
-
Yuqori erish nuqtasi: Molibden barcha sof elementlar orasida eng yuqori erish nuqtalaridan biriga ega, 2,623 ° S da (4,753°F). Bu xususiyat uni yuqori haroratli ilovalar uchun ideal qiladi.
-
Kuch va qattiqlik: Hatto yuqori haroratlarda ham, molibden o'zining mustahkamligi va qattiqligini saqlaydi, ekstremal muhitda foydalanish uchun zarur bo'lgan.
-
Korroziyaga qarshilik: Molibden ko'plab kislotalar va ishqorlarga yaxshi korroziyaga chidamliligini namoyish etadi, nitrat kislota kabi oksidlovchi kislotalar tomonidan hujumga uchrasa ham.
-
Issiqlik o'tkazuvchanligi: Bu ajoyib issiqlik o'tkazuvchisi, samarali issiqlik uzatish talab qilinadigan ilovalar uchun mos qilish.
-
Qotishma agenti: Molibden qotishma sifatida keng qo'llaniladi, ayniqsa po'lat bilan, qattiqlikni oshirish uchun, qattiqlik, va aşınma va korroziyaga qarshilik. Zanglamaydigan po'latlar ko'pincha bu xususiyatlar uchun molibdenni o'z ichiga oladi.
-
Elektr ilovalari: Past qarshilik va yuqori harorat barqarorligi tufayli, molibden elektr kontaktlari va isitish elementlarida ishlatiladi.
-
Yog'lilik: Molibden disulfidi (MoS₂) keng tarqalgan quruq moylash vositasidir, yuqori bosimda past ishqalanish yuzalarini ta'minlash, yuqori haroratli sharoitlar.

(High purity molybdenum disulfide MoS2)
Parameters of High purity molybdenum disulfide MoS2
The Molybdenum disulfide (MoS2) has a purity of approximately 98%. To obtain this purity, the yield and purity must be optimized for specific applications. Here are some key parameters to consider:
1.: MoS2 is obtained from molybdenum ore using high heat and pressure reduction. The processing conditions must be carefully selected to ensure maximum output while minimizing energy consumption.
2. Processing temperature: The optimal processing temperature range is typically between 150°C and 250°C. A high temperature will cause significant degradation of the SiO2 layer, leading to decreased opacity, clarity, and strength. An appropriate temperature should be chosen based on the type of application and desired physical properties.
3. Electrolysis process: The electrolysis process is crucial to obtain high purity MoS2. The choice of electrolyzer type, such as pH activated supercritical (pH Ag/Cl) or selective electrode, will affect the resulting purity. Membrane electrochemical systems can produce moS2 with a higher yield and purity than activated electrode systems.
4. Screenaging techniques: The screenaging technique is used to separate theSiO2 layers during the ferroelectric deformation step. High-screening conditions can result in a more pure MoS2 product, which has improved its performance in many applications.
5.: The composition of the manufacturing environment can also affect the purity of MoS2. Masalan, if the contains high amounts of sulfur dioxide or nitrogen, the SiO2 layer may be affected by oxygen and nitrogen degenerations, leading to reduced purity.
6. Monitoring and control: Regular monitoring of operating conditions, including pH, temperature, screening conditions, and overall operating efficiency, is necessary to maintain a consistent quality level. This involves monitoring the reaction progress, evaluating the quality of the products, and making adjustments to improve efficiency and product yield.
By carefully selecting these parameters, you can achieve high purity MoS2 products that meet specific requirements and optimize your processes.

(High purity molybdenum disulfide MoS2)
Kompaniya profili
Metal Mummy ishonchli global kimyoviy materiallar yetkazib beruvchi hisoblanadi & yuqori sifatli mis va qarindoshlar mahsulotlarini taqdim etishda 12 yildan ortiq tajribaga ega ishlab chiqaruvchi.
Kompaniyada professional texnik bo'lim va sifat nazorati bo'limi mavjud, yaxshi jihozlangan laboratoriya, va ilg'or sinov uskunalari va sotishdan keyingi mijozlarga xizmat ko'rsatish markazi bilan jihozlangan.
Agar siz yuqori sifatli metall kukunlari va nisbiy mahsulotlarni qidirsangiz, iltimos biz bilan bog'laning yoki so'rov yuborish uchun kerakli mahsulotlarni bosing.
To'lov usullari
L/C, T/T, Western Union, Paypal, Kredit karta va boshqalar.
Yuk tashish
Dengiz orqali jo'natilishi mumkin edi, havo orqali, yoki to'lovni olgandan so'ng darhol oshkor qilish orqali.
TSS
-
What are the primary uses of High purity molybdenum disulfide MoS2?
High purity molybdenum disulfide MoS2 is primarily used in the production of steel alloys, ustidan hisob-kitob qilish 80% uning iste'moli. U kimyoviy moddalarda ham qo'llaniladi, moylash materiallari, elektronika, yorug'lik va yadro energiyasi kabi maxsus dasturlar.
-
Molibden tabiatda uchraydi?
Ha, molibden tabiiy ravishda er qobig'ida mavjud, ko'pincha molibdenit kabi minerallarda (MoS₂) va povellit (CaMoO₄). U mis qazib olishning qo'shimcha mahsuloti sifatida qazib olinadi.
-
How does High purity molybdenum disulfide MoS2 affect human health?
Kichik miqdorda, molibden inson uchun muhim iz element hisoblanadi, ferment funktsiyalarida rol o'ynaydi. Biroq, haddan tashqari iste'mol qilish zaharlanishga olib kelishi mumkin, Oddiy ovqatlanish sharoitida bu juda kam uchraydi.
-
Molibden magnitdir?
Molibdenning o'zi magnit emas. U diamagnit material sifatida tasniflanadi, Bu magnit maydonlarni jalb qilishdan ko'ra, ularni biroz qaytaradi.
-
Qaysi sohalar asosan molibdenga tayanadi?
Po'lat sanoati molibdenning eng yirik iste'molchisi hisoblanadi, keyin kimyoviy, neft va gaz, avtomobilsozlik, aerokosmik, va qurilish sanoati.
-
Molibdenni qayta ishlash mumkinmi??
Ha, molibden hurda materiallardan qayta ishlanishi mumkin. Uning qimmatli xossalari va nisbiy tanqisligini hisobga olgan holda, qayta ishlash resurslarni tejashga yordam beradi va iqtisodiy jihatdan foydalidir.

(High purity molybdenum disulfide MoS2)




















































































