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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)
Zeyu Li,Liecong Xue,Junxian Yang,Stefan Wuttke,Peiying He, Chuanyi Lei,Haowei Yang,Liang Zhou,Jiangfan Cao,Anna Sinelshchikova,Guansheng Zheng,Jimin Guo,
ADVANCED SCIENCEno. 5 (2024): e2305126-e2305126
Mariella Arcos,Zhaoli Liu,Luke B Villareal, Paloma Kai Velez, Sharina P Desai,Achraf Noureddine, Huayu Zheng,David R Martin,Jeffrey Brinker, Donna Zhang,Xiang Xue
Research square (2024)
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
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