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| 1 | Carbon nanotubes prepared by anodic aluminum oxide template method显示文摘One of the most unique structural characteristics of carbon nanotubes(CNTs) differentiating from other carbon materials is their hollow nanochannles,which can be utilized for encapsulating and loading foreign matters.The anodic aluminum oxide(AAO) template technique enables the diameter,length,and cap structure control of the replicated CNTs,and thus shows advantages in pore structure control over the traditional CNT growth approaches.This review details the synthesis of CNTs with tunable diameter,length,wall thickness,and crystalline by using the AAO template method.The doping of heteroatoms and filling of foreign matters into AAO-CNTs are also addressed.Moreover,the main challenges and developing trends of the AAO template method are discussed. | HOU PengXiang LIU Chang SHI Chao CHENG HuiMing | 2012 | Chinese Science Bulletin2012,57,2: | 7 |
| 2 | Carbon nanotube/silicon heterojunctions for photovoltaic applications显示文摘Photovoltaic devices have rapidly developed in recent years as they seek to address the ever-increasing energy requirements and environmental issues.Due to their simple structure and easy,low-temperature fabrication,heterojunctions of carbon nanotube(CNT)films and silicon(Si)have been used in solar cells,photodetectors and optoelectronic gas sensors.Significant progress has been made on the development of high-performance CNT/Si heterojunction devices,in particular,CNT/Si solar cells.Here,we give a comprehensive overview of state-of-theart CNT/Si heterojunction devices.The effects of the structure of the CNTs,the interface layer and the silicon structure on the performance of CNT/Si solar cells are analyzed.In addition,potential ways to further improve the performance of such photovoltaic devices are proposed.Finally,the key challenges and developing trends in CNT/Si heterojunction photovoltaic devices are discussed. | Xiangang Hu Pengxiang Hou Chang Liu Huiming Cheng | 2019 | Nano Materials Science2019,1,3: | 3 |
| 3 | Bulk growth and separation of single-walled carbon nanotubes from rhenium catalyst显示文摘Bulk synthesis of single-walled carbon nanotubes(SWNTs)using solid catalyst has been challenging,despite of recent breakthrough in the chirality-specific growth on the flat substrate surface.In this work,we propose a porous magnesia support rhenium catalyst for bulk synthesis of SWNTs.It is found that the well-dispersed catalyst with a high melting point and the optimal chemical vapor deposition reaction conditions account for the growth of SWNTs.Detailed characterizations reveal the produced SWNTs are dominant in(n,n−1)and(n,n−2)species.Furthermore,by using a multicolumn chromatography post-growth separation method,SWNTs with three defined diameter ranges were obtained.This work guides the design of porous oxide supported catalyst for bulk synthesis and diameter-dependent sorting of SWNTs,which will ultimately help harness the extraordinary properties of SWNTs. | Chen Ma Yumin Liu Lili Zhang Liu Qian Yiming Zhao Ying Tian Qianru Wu Dong Li Nan Zhao Xueting Zhang Liantao Xin Huaping Liu Pengxiang Hou Chang Liu Maoshuai He Jin Zhang | 2022 | Nano Research2022,15,7: | 2 |
| 4 | High-pressure hydrogen storage in zeolite-templated car- bon显示文摘 | Nishihara Hirotomo Hou Pengxiang Li Lixiang | 2009 | The Journal of Physical Chemistry C2009,113,8: | 1 |
| 5 | Fabrication of nano-Al based composites reinforced by single-walled carbon nanotubes显示文摘 | Zhong Rong Cong Hongtao Hou Pengxiang | 2003 | Carbon2003,41,4: | 1 |
| 6 | An invasive zone in human liver cancer identified by Stereo-seq promotes hepatocyte–tumor cell crosstalk,local immunosuppression and tumor progression显示文摘Dissecting and understanding the cancer ecosystem,especially that around the tumor margins,which have strong implications for tumor cell infiltration and invasion,are essential for exploring the mechanisms of tumor metastasis and developing effective new treatments.Using a novel tumor border scanning and digitization model enabled by nanoscale resolution-SpaTial Enhanced REsolution Omics-sequencing(Stereo-seq),we identified a 500µm-wide zone centered around the tumor border in patients with liver cancer,referred to as“the invasive zone”.We detected strong immunosuppression,metabolic reprogramming,and severely damaged hepatocytes in this zone.We also identified a subpopulation of damaged hepatocytes with increased expression of serum amyloid A1 and A2(referred to collectively as SAAs)located close to the border on the paratumor side.Overexpression of CXCL6 in adjacent malignant cells could induce activation of the JAK-STAT3 pathway in nearby hepatocytes,which subsequently caused SAAs’overexpression in these hepatocytes.Furthermore,overexpression and secretion of SAAs by hepatocytes in the invasive zone could lead to the recruitment of macrophages and M2 polarization,further promoting local immunosuppression,potentially resulting in tumor progression.Clinical association analysis in additional five independent cohorts of patients with primary and secondary liver cancer(n=423)showed that patients with overexpression of SAAs in the invasive zone had a worse prognosis.Further in vivo experiments using mouse liver tumor models in situ confirmed that the knockdown of genes encoding SAAs in hepatocytes decreased macrophage accumulation around the tumor border and delayed tumor growth.The identification and characterization of a novel invasive zone in human cancer patients not only add an important layer of understanding regarding the mechanisms of tumor invasion and metastasis,but may also pave the way for developing novel therapeutic strategies for advanced liver cancer and other solid tumors. | Liang Wu Jiayan Yan Yinqi Bai Feiyu Chen Xuanxuan Zou Jiangshan Xu Ao Huang Liangzhen Hou Yu Zhong Zehua Jing Qichao Yu Xiaorui Zhou Zhifeng Jiang Chunqing Wang Mengnan Cheng Yuan Ji Yingyong Hou Rongkui Luo Qinqin Li Liang Wu Jianwen Cheng Pengxiang Wang Dezhen Guo Waidong Huang Junjie Lei Shang Liu Yizhen Yan Yiling Chen Sha Liao Yuxiang Li Haixiang Sun Na Yao Xiangyu Zhang Shiyu Zhang Xi Chen Yang Yu Yao Li Fengming Liu Zheng Wang Shaolai Zhou Huanming Yang Shuang Yang Xun Xu Longqi Liu Qiang Gao Zhaoyou Tang Xiangdong Wang Jian Wang Jia Fan Shiping Liu Xinrong Yang Ao Chen Jian Zhou | 2023 | Cell Research2023,33,8: | 1 |
| 7 | 显示文摘 | Hou pengxiang Yamazaki T Orikasa H | 2005 | Carbon2005,43,: | 1 |
| 8 | Fabrication of nano-Al based composites reinforced by single-walled carbon nanotubes显示文摘 | Zhong Rong Cong Hongtao Hou Pengxiang | 2003 | Carbon2003,41,: | 1 |
| 9 | Synthesis of nitrogen-containing microporous carbon with a highly ordered structure and effect of nitrogen doping on H 2 O adsorption 显示文摘 | Hou Pengxiang Orikasa H Yamazaki T | 2005 | Chem Mater2005,17,20: | 1 |
| 10 | Fabrication of nano-A1 based composites reinorced by single-walled carbon nanotubes显示文摘 | Zhong Rong Cong Hongtao Hou Pengxiang | 2003 | Carbon2003,41,4: | 1 |
| 11 | Hydrogen adsorption/desorption behavior of multi-walled carbon nanotubes with different diameters显示文摘 | Hou Pengxiang Xu Shitao Ying Zhe | 2003 | Carbon2003,41,: | 1 |
| 12 | Angiopoietin-like 4 promotes epidermal stem cell proliferation and migration and contributes to cutaneous wound re-epithelialization显示文摘Proliferation and migration of epidermal stem cells(EpSCs)are essential for epithelialization during skin wound healing.Angiopoietin-like 4(ANGPTL4)has been reported to play an important role in wound healing,but the mechanisms involved are not fully understood.Here,we investigate the contribution of ANGPTL4 to full-thickness wound re-epithelialization and the underlying mechanisms using Angptl4-knockout mice.Immunohistochemical staining reveals that ANGPTL4 is significantly upregulated in the basal layer cells of the epidermis around the wound during cutaneous wound healing.ANGPTL4 deficiency impairs wound healing.H&E staining shows that ANGPTL4 deficiency significantly reduces the thickness,length and area of the regenerated epidermis postwounding.Immunohistochemical staining for markers of EpSCs(α6 integrin andβ1 integrin)and cell proliferation(PCNA)shows that the number and proliferation of EpSCs in the basal layer of the epidermis are reduced in ANGPTL4-deficient mice.In vitro studies show that ANGPTL4 deficiency impedes EpSC proliferation,causes cell cycle arrest at the G1 phase and reduces the expressions of cyclins D1 and A2,which can be reversed by ANGPTL4 overexpression.ANGPTL4 deletion suppresses EpSC migration,which is also rescued by ANGPTL4 overexpression.Overexpression of ANGPTL4 in EpSCs accelerates cell proliferation and migration.Collectively,our results indicate that ANGPTL4 promotes EpSC proliferation by upregulating cyclins D1 and A2 expressions and accelerating the cell cycle transition from G1 to S phase and that ANGPTL4 promotes skin wound re-epithelialization by stimulating EpSC proliferation and migration.Our study reveals a novel mechanism underlying EpSC activation and re-epithelialization during cutaneous wound healing. | Yuan Yang Chenghao Yu Yingying Le Weijuan Gong Jihui Ju Guangliang Zhang Pengxiang Ji Rui Zuo Zhe Liu Ping Zhang Ruixing Hou Yi Fu | 2023 | Acta Biochimica et Biophysica Sinica2023,55,8: | 0 |
| 13 | Study on the Variation Rule of Produced Oil Components during CO_(2) Flooding in Low Permeability Reservoirs显示文摘CO_(2) flooding has been widely studied and applied to improve oil recovery from low permeability reservoirs.Both the experimental results and the oilfield production data indicate that produced oil components(POC)will vary during CO_(2) flooding in low permeability reservoirs.However,the present researches fail to explain the variation reason and rule.In this study,the physical model of the POC variation during CO_(2) flooding in low permeability reservoir was established,and the variation reason and rule were defined.To verify the correctness of the physical model,the interaction rule of the oil-CO_(2) system was studied by related experiments.The numerical model,including 34 components,was established based on the precise experiments matching,and simulated the POC variation during CO_(2) flooding in low permeability reservoir at different inter-well reservoir characteristics.The POC monitoring data of the CO_(2) flooding pilot test area in northeastern China were analyzed,and the POC variation rule during the oilfield production was obtained.The research results indicated that the existence of the inter-well channeling-path and the permeability difference between matrix and channeling-path are the main reasons for the POC variation during CO_(2) flooding in low permeability reservoirs.The POC variation rules are not the same at different inter-well reservoir characteristics.For the low permeability reservoirs with homogeneous inter-well reservoir,the variation of the light hydrocarbon content in POC increases initially followed by a decrease,while the variation of the heavy hydrocarbon content in POC is completely opposite.The carbon number of the most abundant component in POC will gradually increase.For the low permeability reservoirs with the channeling-path existing in the inter-well reservoir,the variation rule of the light hydrocarbon content in POC is increase-decrease-increase-decrease,while the variation rule of the heavy hydrocarbon content in POC is completely opposite.The carbon number variation rule of the most abundant component in POC is increase-decrease-increase. | Ganggang Hou Tongjing Liu Xinyu Yuan Jirui Hou Pengxiang Diwu | 2020 | Computer Modeling in Engineering & Sciences2020,,6: | 0 |
| 14 | The impact of nurses’organizational commitment on their perceptions of the work environment:Strong mediating effect of the psychological contract显示文摘Objective:The objective is to assess the direct and indirect effects of nurses’organizational commitment(OC)on their work environment perceptions(WEP)and the role of the psychological contr act(PC).Methods:A cross‑sectional quantitative study of 3047 registered nurses in four Chinese hospitals was conducted.The Essentials of Magnetism II(Chinese version),OC,and PC scales were used in the study,and the structural equation modeling was used to assess the connections among variables.Results:The results showed that OC was positively correlated with WEP(r=0.561,P<0.001),and PC was negatively correlated with the WEP(r=−0.717,P<0.001),and OC(r=−0.739,P<0.001).Nurses’PC played a strong mediating role between OC and WEP,accounting for 87.64%of the total effect.Besides,PC played an important role in creating a healthy work environment.Conclusions:The exploration of the relationships among WEP,PC,and OC provides new insights for hospital managers to build a better work environment for nurses,which is conducive to maintaining a stable nurse team and providing high‑quality nursing services for patients. | Pengxiang ZUO Cengceng LU Jing ZHOU Ming HOU Xiaohui JIAO | 2023 | Journal of Integrative Nursing2023,5,2: | 0 |
| 15 | Interplay of transcription factors and microRNAs during embryonic hematopoiesis显示文摘Hematopoietic stem cells (HSCs), which are localized in the bone marrow of adult mammals, come from hematopoietic endothelium during embryonic stages. Although the basic processes of HSC generation and differentiation have been described in the past, the epigenetic regulation of embryonic hematopoiesis remains to be fully described. Here, by utilizing an in vitro differentiation system of mouse embryonic stem cells (ESCs), we identified more than 20 microRNAs that were highly enriched in embryonic hematopoietic cells, including some (e.g. miR-10b, miR-15b, and miR-27a) with previously unknown functions in blood formation. Luciferase and gene expression assays further revealed combinational binding and regulation of these microRNAs by key transcription factors in blood cells. Finally, bioinformatics and functional analyses supported an interactive regulatory control between transcription factors and microRNAs in hematopoiesis. | Xueping Gong Ruihua Chao Pengxiang Wang Xiaoli Huang Jingjing Zhang Xiaozhou Zhu Yanyang Zhang Xue Yang Chao Hou Xiangjun Ji Tieliu Shi Yuan Wang | 2017 | Science China(Life Sciences)2017,60,2: | 0 |