Self-supporting nanoclay as internal scaffold material for direct printing of soft hydrogel composite structures in air

Y Jin, C Liu, W Chai, A Compaan… - ACS applied materials & …, 2017 - ACS Publications
Three dimensional (3D) bioprinting technology enables the freeform fabrication of complex
constructs from various hydrogels and is receiving increasing attention in tissue …

[引用][C] Self-Supporting Nanoclay as Internal Scaffold Material for Direct Printing of Soft Hydrogel Composite Structures in Air

Y Jin, C Liu, W Chai, A Compaan… - ACS Applied Materials & …, 2017 - cir.nii.ac.jp
Self-Supporting Nanoclay as Internal Scaffold Material for Direct Printing of Soft Hydrogel
Composite Structures in Air | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ …

[PDF][PDF] Self-Supporting Nanoclay as Internal Scaffold Material for Direct Printing of Soft Hydrogel Composite Structures in Air

Y Jin, C Liu, W Chai, A Compaan, Y Huang - academia.edu
Figure S2. Mechanical analysis of printed Laponite beam structure. a) Mechanical model of
a simply supported beam. b) Shear force and c) bending moment distributions. d) A simply …

Self-Supporting Nanoclay as Internal Scaffold Material for Direct Printing of Soft Hydrogel Composite Structures in Air

Y Jin, C Liu, W Chai, A Compaan… - … applied materials & …, 2017 - pubmed.ncbi.nlm.nih.gov
Three dimensional (3D) bioprinting technology enables the freeform fabrication of complex
constructs from various hydrogels and is receiving increasing attention in tissue …

Self-Supporting Nanoclay as Internal Scaffold Material for Direct Printing of Soft Hydrogel Composite Structures in Air.

Y Jin, C Liu, W Chai, A Compaan… - ACS Applied Materials & …, 2017 - europepmc.org
Three dimensional (3D) bioprinting technology enables the freeform fabrication of complex
constructs from various hydrogels and is receiving increasing attention in tissue …

[引用][C] Self-Supporting Nanoclay as Internal Scaffold Material for Direct Printing of Soft Hydrogel Composite Structures in Air

J Yifei, L Chengcheng, C Wenxuan, C Ashley, H Yong - 2017