supported by the National Key R&D Program of China(No.2022YFA1104700);National Natural Science Foundation of China(No.31971373,32101163);the Strategic Priority Research Program of the Chinese Academy of Sciences,Grant(No.XDB29050301);Yunnan Key Research and Development Program(No.202003AD150009);Innovation Program of Science and Research from the DICP,CAS(DICP I202128).
Organoids are in vitro model systems that mimic the complexity of organs with multicellular structures and functions, which provide great potential for biomedical and tissue engineering. However, their current formati...
supported by the National Natural Science Foundation of China(Grant Nos.52072105,21676067);the Key R&D Program of Anhui Province(202104a05020044);the Anhui Provincial Natural Science Foundation(2108085J23);Science and Technology Major Project of Anhui Province(202003a05020014);the Fundamental Research Funds for the Central Universities(PA2021KCPY0028,JZ2020YYPY0109).
In traditional in situ polymerization preparation for solid-state electrolytes,initiators are directly added to the liquid precursor.In this article,a novel cellulose paper-based composite separator is fabricated,whic...
supported by NSFC(22175111,21474014,21704013,and 51903149);the Program for Professor of Special Appointment(Eastern Scholar)at the Shanghai Institutions of Higher Learning(TP2019043);the Program of Shanghai Academic/Technology Research Leader(20XD1400100).
Conducting polymers offer attractive mixed ionic-electronic conductivity,tunable interfacial barrier with metal,tissue matchable softness,and versatile chemical functionalization,making them robust to bridge the gap b...
the support for this work from the National Key Research and Development Program(Grant No.2018YFA0703100);the National Nature Science Foundation of China(Grant No.51733006).
Developing a meniscus substitute mimicking the anisotropic mechanics(higher circumferential tensile modulus and lower compressive modulus)of native tissue remains a great challenge.In this work,based on the pendant gr...
financially supported by the National Natural Science Foundation of China(No.62175189);the Shenzhen Science and Technology Program(KQTD20170330110107046);funding support from the Program for Promoting Academic Collaboration and Senior Talent Fostering between China and Canada,Australia,NewZealand,and Latin America(2021-109);the Joint China-SwedenMobility Programme(No.52211530052).
Transfer printing of small-molecular organic semiconductors often faces challenges due to surface adhesion mismatch.Here,we developed a sacrificing-layer-assisted transfer printing technique for the deposition of smal...