Isitokhwe# | Ubungakanani | Ubuninzi Bobuninzi (g/ml) | Ukuxinana kweMpompo (g/ml) | SSA(BET) m2/g | Ubunyulu % | Morpholgoy |
HW-FB11501 | 1-3um | 0.6-1.2 | 2.0-3.0 | 1.5-2.5 | 99.99 | I-Flake |
HW-FB11502 | 1-3um | 1.5-2.5 | 3.5-4.2 | 2.5 | 99.99 | I-Flake |
HW-FB11601 | 3-5um | 0.6-1.2 | 2.0-3.0 | 1.5-2.5 | 99.99 | I-Flake |
HW-FB11602 | 3-5um | 1.5-2.5 | 3.5-4.2 | 2.5 | 99.99 | I-Flake |
HW-FB11701 | 5-8um | 0.6-1.2 | 2.0-3.0 | 1.5-2.5 | 99.99 | I-Flake |
HW-FB11702 | 5-8um | 1.5-2.5 | 3.5-4.2 | 2.5 | 99.99 | I-Flake |
HW-FB11703 | 8-12um | 1.8-2.0 | 3.5-4.2 | 0.6-1.0 | 99.99 | I-Flake |
Qaphela:Ezinye iinkcukacha zingenziwa ngokweemfuno, nceda usixelele iiparamitha ezineenkcukacha ozifunayo. |
Umgubo wesilivere weFlake usetyenziswa ikakhulu njengokutyabeka, umzekelo, umgangatho ophakamileyo wokugquma kwizihluzi, ukwambathisa isilivere yeecapacitors zeceramic, ubushushu obuphantsi be-sintered conductive paste, i-dielectric arc.
Kwakhona yiba njengoncamathiselo oluqhubayo, umzekelo: i-electromagnetic shielding coatings, ii-conductive coatings, ii-inki eziqhubayo, irabha eqhubayo, iplastiki eqhubayo, iiseramikhi eziqhubayo, njl.
1. Intlama yesilivere yomgangatho ophezulu (iglu) :
Namathisela (iglue) kwi-electrodes yangaphakathi nangaphandle yamacandelo e-chip;
Ncamathelisa (iglu) kwifilimu eshinyeneyo edibeneyo yesekethe;
Ncamathisela (iglu) kwi-electrode yeseli yelanga;
I-conductive yesilivere ye-paste ye-chip ye-LED.
2. I-Coductive Coating
Isihluzi esinomgangatho ophezulu wokugquma;
I-porcelain tube capacitor ene-coating yesilivere
Ubushushu obuphantsi be-sintering paste conductive;
Intlama yeDielectric
I-nanoparticles yesilivere inamandla okuxhasa ii-plasmons zomhlaba, ezikhokelela kwiimpawu ezikhethekileyo ze-optical.Kumaza athile obude, iiplasmons zomphezulu ziye zitsale kwaye emva koko zifunxe okanye zisasaze ukukhanya kwesiganeko ngamandla kangangokuba i-nanoparticles nganye inokubonwa kusetyenziswa imakroskopu yentsimi emnyama.Ezi nqanaba zokuchithwa kunye nokufunxa ziyakwazi ukulungiswa ngokuguqula imilo kunye nobukhulu be-nanoparticles.Ngenxa yoko, ii-nanoparticles zesilivere ziluncedo kwii-sensors ze-biomedical kunye ne-detectors kunye neendlela zokuhlalutya eziphambili ezifana ne-face-enhanced fluorescence spectroscopy kunye ne-surface-enhanced Raman spectroscopy (SERS).Ngaphezu koko, amazinga aphezulu okusasazwa kunye nokufunxa abonwa nge-nanoparticles yesilivere ayenza ibe luncedo ngakumbi kwizicelo zelanga.Iinanoparticles zisebenza njengee-eriyali ezisebenza kakuhle kakhulu;xa i-Ag nanoparticles ifakwe kubaqokeleli, iphumela ekusebenzeni okuphezulu kakhulu.
Iinanoparticles zesilivere zinomsebenzi ogqwesileyo we-catalytic kwaye zinokusetyenziswa njengezinto ezibangela ukusabela okuninzi.Iinanoparticles ezihlanganisiweyo ze-Ag/ZnO zalungiswa ngokufakwa kwefotoreduction yesinyithi esixabisekileyo.I-photocatalytic oxidation yesigaba segesi i-n-heptane isetyenziswe njengempendulo yomzekelo wokufunda imiphumo ye-photocatalytic umsebenzi weesampuli kunye nesixa se-metal deposition ehloniphekileyo kumsebenzi we-catalytic.Iziphumo zibonisa ukuba ukufakwa kwe-Ag kwi-ZnO nanoparticles kunokuphucula kakhulu umsebenzi we-photocatalyst.
Ukunciphisa i-p - nitrobenzoic acid kunye ne-nanoparticles yesilivere njenge-catalyst.Iziphumo zibonisa ukuba iqondo lokunciphisa i-p-nitrobenzoic acid kunye ne-nano-silver njenge-catalyst inkulu kakhulu kunokuba ngaphandle kwe-nano-silver.Kwaye, ngokunyuka kwenani le-nano-silver, ngokukhawuleza ukusabela, ukusabela okupheleleyo.I-ethylene oxidation catalyst, i-catalyst yesilivere exhaswayo kwiseli yamafutha.