研究項目
- 優配研究金項目:纖維熱電發電機的設計,建模,製造和評估
- 優配研究金項目:基於N-鹵胺結合金屬的有機框架應用於室內紡織品可持續的殺菌策略
- 優配研究金項目:像皮膚一樣具有刺激響應,定向流和防水的織物
- 優配研究金項目:創造四經紗羅的織造技術,系統和設備
- 優配研究金項目:可同時進行微粒處理和成像的雙功能超聲換能器
- 優配研究金項目:開發和驗證用於監測建築工人心理和身體壓力的非侵入性工具
- 創新科技基金項目:耐久性抗病毒抗菌口罩塗層
詳情
本项目旨在开发一系列耐久性环保消毒剂,可应用于口罩和其他个人物品,以保护健康,防止病毒和细菌感染。 在此之前,我们发现聚(3-羟基丁酸)(PHB)寡聚体及其同系物具有有效的广谱抗病毒和抗菌性能。 在本项目中,将进一步研究两种技术路线,以制备有效的抗病毒消毒剂。 PHB低聚物及其同系物将通过合成或水解产生,然后再配制成消毒剂。 采用消毒剂涂布技术制备抗病毒和抗微生物口罩。 本项目将评估消毒剂和口罩的抗病毒和抗微生物作用,以及安全性测试,例如:过敏和毒性。
應用
制造技术和原型产品将具有优良抗菌和抗病毒性能的口罩赠予老年人佩戴,帮助老年用户提高生活质量,这也可以帮助他们减少生病的健康风险。 抗病毒和抗菌口罩将减少丢弃后的二次污染。
技術突破
本制造技术可以为生产耐久的抗病毒和抗菌口罩铺平道路,在有效性、健康和环境效益方面具有优势。
潛在優點
该项目将提高纺织及医疗公司在市场上的竞争力,从而增加香港特区的经济。 也将有利于未来在相关领域领先的研究中心的发展,培养出许多年轻的研究人员。 该技术和产品的成功采用将促进医疗保健、聚合物、纺织和回收行业的发展, 促进新的市场和产品的开发,具有良好的应用前景。
創新科技基金項目:智能醫用壓力服裝量身定制的關鍵技術
詳情
本項目旨在開發未來定制化智能醫療壓力襪的關鍵技術。此项目主要包括五個部分:
1. 用於定制化智能醫療壓力襪的設計,能夠快速從三維人體掃描數據中提取關鍵參數的新方法和算法;
2. 用於定制化智能醫療壓力襪的具有壓力預測功能的CAD/CIM模块;
3. 定制化醫用壓力襪,和具有壓力監控功能的壓力襪,包括感測器,電路,數據傳輸和分析軟件,顯示和電源;
4. 基於我們正在進行的ITF項目中開發的仿生變形腿模型,完善可以精確監控壓力襪壓力測試的顯示界面;
5. 設計和製作可以更準確地模擬人腿的多維可調人腿模型。
創新科技基金項目:試用:適合行動受限老人穿著的綠色功能內衣
詳情
面對當今社會人口老齡化的挑戰,老年患者的健康護理問題變得至關重要。許多依賴輪椅或床的老年人長期保持相同的姿勢或位置,會導致受壓區缺血和缺氧。此外,局部缺血的皮膚與較硬接觸表面的摩擦經常引起皮膚損傷,最終導致壓瘡。同時,皮膚和軟組織感染在老年人群中也很常見。引起感染的生物體類型多種多樣,包括細菌、病毒和真菌感染。
为了改善老年人的生活环境,本項目旨在: (1) 開發具有天然抗菌性能、超柔滑和優異手感的針織印花功能面料、內衣和襪子;(2) 除了實驗室試驗評估,在非政府組織的養老院針對行動受限老人進行內衣試穿評估。
應用
襪子採用PHBV/PLA/棉混紡紗技術,根據老人襪子的特殊要求完成加工生產; 同時,內衣服裝主要借助針織、印花、整理、裁剪和縫製等工藝完成加工生產。
環保內衣和襪子具有天然的抗菌性能,對金黃色葡萄球菌、肺炎鏈球菌、白色念珠菌均有抗菌作用,同時具有優異的柔軟度和良好的耐磨性、導熱性、手感好、無異味。
該紡織加工技術和產品, 除了可以幫助行動不便的老年人穿上環保的可降解內衣和襪子,提高他們的生活品質之外,還可以幫助他們減少生病的健康風險。
技術突破
本項目研發的環保內衣和襪子, 對行動不便的老年人具有優異的抗菌、柔軟性和良好的耐磨性。
潛在優點
該項目將提升紡織及醫療護理公司在市場上的競爭力,從而提升香港特區的經濟效益。
綠色功能性內衣還將提高人們的環保意識,為擴大環保產品的市場份額做出貢獻,並給我們整個社會帶來長遠的意義。
該技術和產品的成功應用將增強聚合物、紡織和回收行業的良好前景,開拓新的市場和產品。
創新科技基金項目:試用: 改善柏金遜患者活動能力的智能穿戴系統(頤步)
詳情
柏金遜病(PD)最明顯的症狀是運動。 凍步(FOG)是柏金遜患者跌倒的主要危險因素之一,該種病症在中段PD患者中非常常見。柏金遜病不能被根治,但是,藥物,手術和物理治療可以改善PD患者的運動症狀。由於提示是柏金遜患者克服凍步的常見康復策略。外部提示可以幫助個人專注於步行,並在凍步發生時將注意力轉移到步行中,從而便於步態啟動和/或繼續過程。
該項目旨在開發一種智能可穿戴系統,該系統包含實時織物壓力傳感器和加速度計。 該系統不僅可以檢測步態凍結,還可以在柏金遜患者出現凍步時給與提示(聽覺或視覺)。
應用
根據柏金遜患者的姿勢參數分析,建立凍步檢測模型。
系統會根據柏金遜患者的需求設計,封裝和優化,不但可以檢測凍步,而且當患者出現凍步時為柏金遜患者給與提示。
試用與香港柏金遜協會合作,將在理大的室內實驗室環境中進行。 該系統同時可用作康復設備,並協助臨床醫生評估培訓和提示對柏金遜患者康復的影響。
技術突破
這是一項將紡織技術運用到康復領域的新技術。醫生,專業康復治療師,柏金遜患者,柏金遜患者的家屬和相關組織是目標群體。
潛在優點
該技術幫助柏金遜患者監測其活動狀態並向他們提供信號以克服凍步,並協助臨床醫生設計和評估康復狀態,並可提供一種有效的方法來了解柏金遜患者的凍步和“開 - 關”現象。因此,它將協作了解帕金森病的症狀並有益於延長柏金遜患者的生命。
該項目由不同研究領域的團隊成員(包括紡織,電子,計算機和康復科學)組成。該項目的結果和相關患者的獨特數據庫將協助發現柏金遜症,這可能有助於緩解由於香港老齡化社會而帶來的沉重醫療負擔。
該技術和產品的成功應用將拓寬傳統紡織品,醫療保健,康復設備和電子行業將有望進入新市場和開發新產品,這可能會增加公司在市場上的競爭力 。
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- Simultaneous Surface Covalent Bonding and Radical Polymerization for Constructing Robust Soft Actuators with Fast Underwater Response, Chemistry of Mater., 2019, 31, 22, 9504-9512.
- Phosphorus Incorporation into Co9S8 Nanocages for Highly Efficient Oxygen Evolution Catalysis, Small, 2019, 15, 1904507.
- Freestanding Lamellar Porous Carbon Stacks for Low Temperature Foldable Supercapacitors, Small, 2019, 1902071.
- Two-dimensional hierarchically porous carbon nanosheets for flexible aqueous supercapacitors with high volumetric capacitance, Nanoscale, 2019, 11, 23, 11086-11092.
- Fabrication of Asymmetric Tubular Hydrogels through Polymerization Assisted Welding for Thermal Flow Actuated Artificial Muscles, Chem. Mater., 2019, 31, 12, 4469-4478.
- Vacuum-free fabrication of high-performance semitransparent perovskite solar cells via e-glue assisted lamination process, Sci. China Chem. , 2019, 62, 7, 875-882.
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Development of Dip-Pen Nanolithography (DPN) and Its Derivatives, Small, 2019, 15, 21, 1900564.
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Non-contact High-frequency Ultrasound Microbeam Stimulation: A Novel Finding and Potential Causes of Cell Responses, Ieee Transactions on Bio-medical Engineering, 16 Jul 2019.
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Conventional Sintered Cu2-xSe Thermoelectric Material, Journal of Materiomics, Volume 5, Issue 4, December 2019, Pages 626-633.
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Doping effect of fluoride anion on microstructural and electrochemical properties of lithium-rich cathode materials, Materials Letters, Volume 253, 15 October 2019, Pages 82-85.
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Construction of Zinc-Magnesium-Iron Multinary Spinel Core-shell Microspheres with Enhanced Photocatalytic Properties of 1, 2-Dichlorobenzene Toxic Species, Journal of Photochemistry and Photobiology A: Chemistry, Volume 382, 1 September 2019, 111903.
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Miniature Transducer Using PNN-PZT-based Ceramic for Intravascular Ultrasound, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, vol. 66, no. 6, pp. 1102-1109, June 2019.
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Acoustic levitation and manipulation by a high-frequency focused ring ultrasonic transducer, Appl. Phys. Lett., 114, 054103 (2019).
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Study of conventional sintered Cu2Se thermoelectric material, Energies, 2019, 12(3), 401.
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Enhanced dielectric permittivity in surface-modified graphene/PVDF composites prepared by an electrospinning-hot pressing method, Composites Science and Technology, Volume 172, 1 March 2019, Pages 58-65.
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Flexible, stable and sensitive surface-enhanced Raman scattering of graphite/titanium-cotton substrate for conformal rapid food safety detection. Cellulose. 27, 941-954.
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A stable, ultrasensitive and flexible substrate integrated from 1D Ag/α-Fe2O3/SiO2 fibers for practical Surface-Enhanced Raman Scattering detection. Composites Part B., 177, 107376.
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Characterization of Mucosa-Associated Microbiota in Matched Cancer and Non-neoplastic Mucosa From Patients With Colorectal Cancer, Frontiers in Microbiology, 12 June 2019.
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Emergence of Carbapenem-resistant Acinetobacter baumannii ST195 Harboring blaoxa-23 Isolated from Bacteremia in Hong Kong. Microbial Drug Resistance, Microbial Drug Resistance, Vol. 25, No. 8, 11 Oct 2019.
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A New Antimicrobial Agent: Poly(3-hydroxybutyric acid) Oligomer, Macromolecular Bioscience, Volume19, Issue5, May 2019, 1800432.
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Two-dimensional materials in perovskite solar cells, Materials Today Energy, 11, 128-158 (2019).
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Inkjet printed pseudocapacitive electrodes on laser-induced graphene for electrochemical energy storage, Materials Today Energy, 12, 155-160 (2019).
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Efficiency Enhancement of Organic Photovoltaics by Introducing High-Mobility Curved Small-Molecule Semiconductors as Additives, J. Mater. Chem. A, Issue 20, 2019, DOI: 10.1039/C9TA02636C.
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Recent Progress in Printable Organic Field Effect Transistors, J. Mater. Chem. C, 7, 790-808 (2019).
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Schottky Barrier-Controlled Black Phosphorus/Perovskite Phototransistors with Ultrahigh Sensitivity and Fast Response, Small, 15, 1901004, (2019).
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High-efficiency robust organic solar cells using transfer-printed PEDOT: PSS electrodes through interface bonding engineering, Mater. Chem. Front., Issue 5, 901-908 (2019).
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Preparation of Flexible Supercapacitor with RGO/Ni-MOF film on Ni-coated Polyester Fabric, Electrochimica Acta, 318, 23-31.
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Flexible and reusable cap-like thin Fe2O3 film for SERS applications, Nano Research, 12(2), 381-388.
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Accumulation behaviors of methane in the aqueous environment with organic matters, Fuel, Volume 236, 15 January 2019, Pages 836-842.
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Designing wearable computing devices for improved comfort and user acceptance, Ergonomics, 62:11, 1474-1484, DOI: 10.1080/00140139.2019.1657184.
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Detection and comparison of breast shape variation among different three-dimensional body scan conditions: nude, with a structured bra, and with a soft bra, Textile Research Journal, 2019, 89, 21-22, Page: 4595-4606.
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A novel method to assess breast shape and breast asymmetry, The Journal of The Textile Institute, 2019, 110, 8, 1229-1240.
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Preparation of highperformance microfiber synthetic leather base using thermoplastic polyurethane/sulfonated polysulfone electrospun nanofibers, 2019, Textile Research Journal, 89, 14, 2813-2820.
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The Application of Hollow Segmented Pie Bicomponent Spunbond Hydro-Entangled Microfiber Nonwovens for Microfiber Synthetic Leather Apparel, 2019, AATCC Journal of Research, 6, 3, 45-49.
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A novel fractal solution for permeability and Kozeny-Carman constant of fibrous porous media made up of solid particles and porous fibers,Powder Technology, 349, May 2019, Pages 92-98.
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Fabrication and characterization of waterborne polyurethane/silver nanocomposite foams, Polymer Composites, 40 (4), 1492-1498.
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Controlled deposition of electrospun nanofibers by electrohydrodynamic deflection, Journal of Applied Physics, 125 (5), 054901.
專利
- Bio-based Degradable Knitted Fabric with Antibacterial Effect, US10577726B2, 授權, 2020。
- 一种可生物降解的抗菌针织物, CN Patent application, 201610541297.1, 授權, 2020。
- Hernia mesh and its preparation method, US10561484B2, 授權, 2020。
- Highly sensitive biomarker biosensors based on organic electrochemical transistors, US2020/0072780, 公開, 2020。
- Catalysts for degradation of organic pollutants in printing and dyeing wastewater and method of preparation thereof, US10413894B2, 授權, 2019。
- Electrode for Battery and Fabrication Method Thereof, WO 2019/128658 A1, 公開, 2019。
- 集流體、其製備方法及包含他的鋰電子電池, WO 2019/113881 A1, 公開, 2019。
- Electrodes for Batteris, US 2019/0190004 A1, 公開, 2019。
- Process for manufacturing fabric pressure sensor and tool for manufacturing fabric pressure sensor, US 15/095,167B2, 授權, 2019。
- Electrode for Battery and Fabrication Method Thereof, WO 2019/128658 A1, 公開, 2019。
其他
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已註冊1个香港商標,商標號碼:304956922。