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个人简介
Dr. Brinker initiated the first fundamental and systematic studies of chemical processing of ceramics via sol-gel techniques leading ultimately to the publication of Sol-Gel Science - the Physics and Chemistry of Sol-Gel Processing in 1990 still considered to be the "Bible" of the field.
During this same period Brinker actively engaged the participation of chemists in molecular-based materials synthesis creating the very successful MRS symposium series "Better Ceramics Through Chemistry. This series provide a forum and served as a primary basis for today's burgeoning field of nanomaterials science.
In the mid 1990's, Brinker in collaboration with Professor Doug Smith and UNM graduate students developed a new chemical-based process to make aerogels, the world's lightest solids, obviating the need for energy intensive supercritical processing.
In 1997, Dr. Brinker's group published their pioneering work on evaporation induced self-assembly (EISA) of ordered 'mesoporous' silica films; the first combination of controlled sol-gel chemistry with molecular self-assembly, enabling rapid, continuous processing and precise structural control of self-assembled nanoscale films. (Lu, Nature 1997).
During this same period Brinker actively engaged the participation of chemists in molecular-based materials synthesis creating the very successful MRS symposium series "Better Ceramics Through Chemistry. This series provide a forum and served as a primary basis for today's burgeoning field of nanomaterials science.
In the mid 1990's, Brinker in collaboration with Professor Doug Smith and UNM graduate students developed a new chemical-based process to make aerogels, the world's lightest solids, obviating the need for energy intensive supercritical processing.
In 1997, Dr. Brinker's group published their pioneering work on evaporation induced self-assembly (EISA) of ordered 'mesoporous' silica films; the first combination of controlled sol-gel chemistry with molecular self-assembly, enabling rapid, continuous processing and precise structural control of self-assembled nanoscale films. (Lu, Nature 1997).
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Nature Reviews Bioengineeringpp.1-2, (2024)
Qi Lei, Yaqian Sun,Junda Huang,Wei Liu, Xiaolong Zhan,Wenxiang Yin,Sishi Guo, Anna Sinelshchikova,C Jeffrey Brinker, Zhiyuan He,Jimin Guo, Stefan Wuttke,
Angewandte Chemie (International ed. in English)no. 22 (2023)
CHEMISTRY OF MATERIALS (2023)
Scientific reportsno. 1 (2023): 6873-13
Achraf Noureddine,Angelea Maestas-Olguin,Lien Tang, Jim I. Corman-Hijar, Marian Olewine,Jacob A. Krawchuck, Johanna Tsala Ebode, Chuzube Edeh, Caleb Dang,Oscar A. Negrete,John Watt,Tamara Howard,
ACS nanono. 17 (2023): 16308-16325
Fanting Kong, Qi Liu, Yu Ma,Ping He,Guansheng Zheng,Yunyun Xu,Junda Huang,C. Jeffrey Brinker,Kaisheng Liu, Zhu Wang
Chemistry of Materialsno. 12 (2023): 4731-4742
Angelea Maestas-Olguin, Marian Olewine, Sheymah Thabata, Johanna Tsala Ebode, Mariella Arcos,Jacob Krawchuck,Eric N. Coker,Adrian J. Brearley,Xiang Xue,John Watt,Achraf Noureddine,C. Jeffrey Brinker
CHEMISTRY OF MATERIALSno. 24 (2023): 10371-10383
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