기관회원 [로그인]
소속기관에서 받은 아이디, 비밀번호를 입력해 주세요.
개인회원 [로그인]

비회원 구매시 입력하신 핸드폰번호를 입력해 주세요.
본인 인증 후 구매내역을 확인하실 수 있습니다.

회원가입
서지반출
TiOCl$_2$ 수용액으로부터 자발적으로 일어나는 균일침전에 의한 결정상 TiO$_2$ 단분산 초미분체의 제조
[STEP1]서지반출 형식 선택
파일형식
@
서지도구
SNS
기타
[STEP2]서지반출 정보 선택
  • 제목
  • URL
돌아가기
확인
취소
  • TiOCl$_2$ 수용액으로부터 자발적으로 일어나는 균일침전에 의한 결정상 TiO$_2$ 단분산 초미분체의 제조
저자명
김선재,박순동,전치중,김경호,이희균
간행물명
요업학회지
권/호정보
1998년|35권 11호|pp.1212-1221 (10 pages)
발행정보
한국세라믹학회
파일정보
정기간행물|
PDF텍스트
주제분야
기타
이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

The mono-dispersed {{{{ { TiO}_{2 } }} ultrafine particles with the diameters of 40nm-400nm were obtained from aqueous {{{{ {TiOCl }_{2 } }} solution with 0.67M Ti4+ concentration prepared diluting TiCl4 using homogeneous spon-taneous precipitation process. The process was carried out under the conditions to protect H2O evaporation completely or to make it freely in the ranges of 17$^{circ}C$~100~ and to protect it completely in the ranges of 10$0^{circ}C$~23$0^{circ}C$ With the spontaneous hydrolysis of TiOCl2 which means the natural decrease of pH value in the aqueous {{{{ {TiOCl }_{2 } }} solutions all the mono-dispersed precipitates were crystallized with anatase or rutile TiO2 phase during the reaction regardless of various conditions. TiO2 precipitate with rutile phase was fully formed at the temperatures blow $65^{circ}C$ which were not involved in the evaporation of H2O and above 155$^{circ}C$ which were possible to obtain by suppressing it TiO2 precipitate with rutile phyase including small amount of anatase phase started to be formed in the intermediate temperatures above 7$0^{circ}C$ showing the full formation of anatase above 95$^{circ}C$ under the free evaporation of H2O However in the case of completely suppressing H2O evaporation TiO2 precipitate with anatase phase that had been already formed by rapid reaction at the higher temperatures was fully transformed into the precipitate with rutile phase. These cry-stallization behaviors of TiO2 precipitates with the reaction temperature would be caused due to the ex-istences of the capillary pressure between the agglomerated needle-shaped particles or the ultrafine clusters the reaction rate and the vapor pressure of H2O