News on China's scientific and technological development.

manqiangrexue

Brigadier
China should just start their own international scientific jounals.
We definitely have. Some of them started out really easy to publish in with impact factor 3 or less, then in 2-3 years became picky as hell with the score shooting to 10 or 15 or so. I was part of this; I published a review with ease in 2017 or so. Wrote up a part 2 (usually, Part 2s get favorable consideration for publication) in 2020 and had to jump through so many loops the second time I could get job security death threats from circus animals.
 

SanWenYu

Captain
Registered Member
Progress by Zhejiang university in making high performance graphene-based carbon fibre in room temperature.

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经过近十五年的持续思考和探索,浙江大学高分子系高超教授团队最新工作提出“分域剪切多流场”方法,在氧化石墨烯凝胶纤维中实现微纤亚单元的液晶织构,当纤维凝固干燥时,氧化石墨烯分子在每个微纤单元内限域折叠。区别于传统氧化石墨烯分子在纤维结构中的无序折叠和堆积,微纤限域具有折叠细晶特点,大幅减少并减小了石墨烯间的微孔缺陷,形态由扁平粗孔变为针状细孔。在25℃室温催化还原下,限域折叠的石墨烯纤维表现出优异的拉伸强度(5.19GPa)和模量(529GPa),导热率、导电率分别达到232W/mK和120S/cm,同时具有92%的碳含量,实现了室温制备高性能石墨烯基碳纤维
 

SanWenYu

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Registered Member
Chinese scientists reduced most of lithography pattern defects caused by photoresist residue on wafers.

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团队为控制缠结提出了两项实用方案:适当提高曝光后烘烤温度,抑制聚合物缠结,减少大团聚体生成;优化显影工艺,让晶圆表面始终有连续液膜,使其可以带走聚合物,避免其沉积。两种方案结合,12英寸晶圆表面的光刻胶残留物引起的图案缺陷被成功消除,缺陷数量降幅超过99%。
 

tphuang

General
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Progress by Zhejiang university in making high performance graphene-based carbon fibre in room temperature.

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经过近十五年的持续思考和探索,浙江大学高分子系高超教授团队最新工作提出“分域剪切多流场”方法,在氧化石墨烯凝胶纤维中实现微纤亚单元的液晶织构,当纤维凝固干燥时,氧化石墨烯分子在每个微纤单元内限域折叠。区别于传统氧化石墨烯分子在纤维结构中的无序折叠和堆积,微纤限域具有折叠细晶特点,大幅减少并减小了石墨烯间的微孔缺陷,形态由扁平粗孔变为针状细孔。在25℃室温催化还原下,限域折叠的石墨烯纤维表现出优异的拉伸强度(5.19GPa)和模量(529GPa),导热率、导电率分别达到232W/mK和120S/cm,同时具有92%的碳含量,实现了室温制备高性能石墨烯基碳纤维
that modulus number seems unreal. Even 529MPa would be very high by carbon fiber standard. 5190 MPa tensile strength would be more like a T700S level. Seems pretty crazy for a first effort here.
 

def333

New Member
Registered Member

Key Companies & Their T1100 Carbon Fiber Milestones​

  • Shandong Yongcheng New Materials Co., Ltd.: Held the technical appraisal meeting for its "T1100 Grade Ultra - High - Strength Carbon Fiber Industrial Preparation Technology" on July 27, 2025.
  • Weihai Guangwei Composites Co., Ltd.: Completed the development of wet - spun T1100 carbon fiber and passed application verification in 2024; developed dry - jet wet - spun T1100 products that won project assessments in 2025.
  • Sinofibers Technology Co., Ltd.: Its self - developed ZT9H series (equivalent to T1100) has passed aerospace verification (specific time not specified); its kiloton - scale production line supports T800 - T1100 production.
  • Zhongfu Shenying Carbon Fiber Co., Ltd.: Has achieved a full - spectrum breakthrough covering T700 to T1100 grades (specific T1100 achievement time not specified).
  • Changsheng (Langfang) Technology Co., Ltd.: On September 29, 2024, the "Industrial - scale Preparation Technology of Ultra - High - Strength Polyacrylonitrile Carbon Fiber ZA70 (T1100 - grade)" jointly developed by Changsheng Technology and Shenzhen University passed the scientific and technological achievement evaluation organized by the Chinese Composite Materials Society. In September 2025, it achieved the goal of stable mass production of T1100 - grade carbon fiber on the domestic - made kiloton - scale production line.
 
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