US2018327927A1PendingUtilityA1

ULTRA SMALL GRAIN-SIZE NANOCRYSTALLINE DIAMOND FILM HAVING A SiV PHOTOLUMINESCENCE AND MANUFACTURING METHOD THEREOF

Assignee: UNIV ZHEJIANG TECHNOLOGYPriority: Sep 30, 2016Filed: Sep 26, 2017Published: Nov 15, 2018
Est. expirySep 30, 2036(~10.2 yrs left)· nominal 20-yr term from priority
C30B 35/007C09K 11/65C30B 25/105C30B 25/186C30B 29/04C23C 16/274C23C 16/56B82Y 40/00B82Y 30/00C30B 25/00B33Y 30/00
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Claims

Abstract

An ultra small grain-size nanocrystalline diamond film having a SiV photoluminescence, is manufactured by the following method: (1) manufacturing, on a single crystal silicon substrate, a nanocrystalline diamond film having a SiV photoluminescence by using a microwave plasma chemical vapor deposition method; (2) performing oxygen plasma etching treatment on the nanocrystalline diamond film obtained in step (1) for 5-30 min by using an oxygen plasma bombardment method in a mixed gas plasma having an oxygen-nitrogen gas volume ratio of 1:4-6 and at an atmospheric pressure of 0.5-6 torr and a microwave power of 600-1000 W, thereby obtaining the ultra small grain-size nanocrystalline diamond film having the SiV photoluminescence.

Claims

exact text as granted — not AI-modified
1 . An ultra small grain-size nanocrystalline diamond film having SiV photoluminescence, is manufactured by the following method:
 (1) Manufacturing, on a single crystal silicon substrate, a nanocrystalline diamond film having SiV photoluminescence by using a microwave plasma chemical vapor deposition method.   (2) Performing oxygen plasma etching treatment on the nanocrystalline diamond film obtained in step (1) for 5-30 min in a mixed gas plasma with an oxygen-nitrogen gas volume ratio of 1:4-6 and at an atmospheric pressure of 0.5-6 torr and a microwave power of 600-1000 W, thereby obtaining the ultra small grain-size nanocrystalline diamond film having the SiV photoluminescence.   
     
     
         2 . Ultra small grain-size nanocrystalline diamond film having SiV photoluminescence according to  claim 1 , wherein in the ultra small grain-size nanocrystalline diamond film having SiV photoluminescence, the size of the nanocrystalline diamond grains is 2.5 to 5 nm, and the size distribution is uniform. 
     
     
         3 . Ultra small grain-size nanocrystalline diamond film having SiV photoluminescence according to  claim 1 , wherein the thickness of the nanocrystalline diamond film prepared in step (1) is 1-3 μm, and the grain size in the film is 6-10 nm. 
     
     
         4 . Ultra small grain-size nanocrystalline diamond film having SiV photoluminescence according to  claim 1 , wherein the operation method of the step (1) is:
 (a) Pretreatment: first, the single crystal silicon substrate is ultrasonically vibrated in a mixture of Ti powder, diamond micron powder and acetone for 45 min, then it is put in fresh acetone and ultrasonically vibrated for 1 min; after drying, it is placed in fresh acetone again and ultrasonically vibrated for 1 min; after drying, the substrate for nanocrystalline diamond film growth is obtained.   (b) Depositing film: the single crystal silicon substrate pretreated in step (a) is placed into a microwave plasma chemical vapor deposition apparatus to deposit a nanocrystalline diamond film; the microwave plasma chemical vapor deposition method use a mixed gas with a methane-argon volume ratio of 1-2:49 as the reaction gas and react at 400-500° C. for 1 h; thereby obtain a nanocrystalline diamond film has a thickness of 1-3 μm and a grain size of 6-10 nm on the single crystal silicon substrate surface.   
     
     
         5 . Ultra small grain-size nanocrystalline diamond film having SiV photoluminescence according to  claim 4 , wherein in the mixture of Ti powder, diamond micron powder and acetone, the concentration of Ti powder is 0.001 to 0.005 g/mL, and the concentration of diamond micron powder is 0.001 to 0.005 g/mL.

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