摘要:
Certain example embodiments of this invention relate to the use of graphene as a transparent conductive coating (TCC). In certain example embodiments, graphene thin films grown on large areas hetero-epitaxially, e.g., on a catalyst thin film, from a hydrocarbon gas (such as, for example, C 2 H 2 , CH 4 , or the like). The graphene thin films of certain example embodiments may be doped or undoped. In certain example embodiments, graphene thin films, once formed, may be lifted off of their carrier substrates and transferred to receiving substrates, e.g., for inclusion in an intermediate or final product. Graphene grown, lifted, and transferred in this way may exhibit low sheet resistances (e.g., less than 150 ohms/square and lower when doped) and high transmission values (e.g., at least in the visible and infrared spectra).
摘要:
Certain example embodiments of this invention relate to the use of graphene as a transparent conductive coating (TCC). In certain example embodiments, graphene thin films grown on large areas hetero-epitaxially, e.g., on a catalyst thin film, from a hydrocarbon gas (such as, for example, C 2 H 2 , CH 4 , or the like). The graphene thin films of certain example embodiments may be doped or undoped. In certain example embodiments, graphene thin films, once formed, may be lifted off of their carrier substrates and transferred to receiving substrates, e.g., for inclusion in an intermediate or final product. Graphene grown, lifted, and transferred in this way may exhibit low sheet resistances (e.g., less than 150 ohms/square and lower when doped) and high transmission values (e.g., at least in the visible and infrared spectra).
摘要翻译:本发明的某些示例性实施方案涉及石墨烯作为透明导电涂层(TCC)的用途。 在某些示例性实施例中,在烃类气体(例如C 2 H 2,CH 4等)上在异质外延(例如在催化剂薄膜上)大面积生长的石墨烯薄膜。 某些示例性实施例的石墨烯薄膜可以是掺杂的或未掺杂的。 在某些示例性实施例中,一旦形成的石墨烯薄膜可以从它们的载体衬底上提起并转移到接收衬底,例如包含在中间体或最终产品中。 以这种方式生长,提升和转移的石墨烯可能表现出低的薄层电阻(例如,当掺杂时小于150欧姆/平方和较低)和高透射率值(例如,至少在可见光和红外光谱中)。
摘要:
A scratch resistant coated article is provided which is also resistant to attacks by at least some fluoride-based etchant(s) for at least a period of time. In certain example embodiments, an anti-etch layer(s) is provided on a glass substrate in order to protect the glass substrate from attacks by fluoride-based etchant(s), and an underlayer(s) deposited by flame pyrolysis may be provided under at least the anti-etch layer(s).
摘要:
Certain example embodiments of this invention relate to the use of graphene as a transparent conductive coating (TCC). In certain example embodiments, graphene thin films grown on large areas hetero-epitaxially, e.g., on a catalyst thin film, from a hydrocarbon gas (such as, for example, C 2 H 2 , CH 4 , or the like). The graphene thin films of certain example embodiments may be doped or undoped. In certain example embodiments, graphene thin films, once formed, may be lifted off of their carrier substrates and transferred to receiving substrates, e.g., for inclusion in an intermediate or final product. Graphene grown, lifted, and transferred in this way may exhibit low sheet resistances (e.g., less than 150 ohms/square and lower when doped) and high transmission values (e.g., at least in the visible and infrared spectra).
摘要翻译:本发明的某些示例性实施例涉及石墨烯作为透明导电涂层(TCC)的用途。 在某些示例性实施例中,石墨烯薄膜在大面积上从烃气体(例如C 2 H 2,CH 4等)异质外延地(例如在催化剂薄膜上)生长。 某些示例实施例的石墨烯薄膜可以是掺杂的或未掺杂的。 在某些示例性实施例中,石墨烯薄膜一旦形成就可以从其载体衬底上剥离并转移到接收衬底,例如用于包含在中间产品或最终产品中。 以这种方式生长,提升和转移的石墨烯可以表现出低表面电阻(例如,当掺杂时小于150欧姆/平方和更低)和高透射值(例如至少在可见光和红外光谱中)。
摘要:
Certain example embodiments of this invention relate to the use of graphene as a transparent conductive coating (TCC). In certain example embodiments, graphene thin films grown on large areas hetero-epitaxially, e.g., on a catalyst thin film, from a hydrocarbon gas (such as, for example, C 2 H 2 , CH 4 , or the like). The graphene thin films of certain example embodiments may be doped or undoped. In certain example embodiments, graphene thin films, once formed, may be lifted off of their carrier substrates and transferred to receiving substrates, e.g., for inclusion in an intermediate or final product. Graphene grown, lifted, and transferred in this way may exhibit low sheet resistances (e.g., less than 150 ohms/square and lower when doped) and high transmission values (e.g., at least in the visible and infrared spectra).
摘要:
A coated article is provided that may be used as a vehicle windshield, insulating glass (IG) window unit, or the like. Ion beam treatment is performed on a layer(s) of the coating. For example, an overcoat layer (e.g., of silicon nitride) of a low-E coating may be ion beam treated in a manner so as to cause the ion beam treated layer to include (a) nitrogen-doped Si 3 N 4 , and/or (b) nitrogen graded silicon nitride. It has been found that this permits durability of the coated article to be improved.
摘要翻译:提供了可用作车辆挡风玻璃,中空玻璃(IG)窗单元等的涂覆制品。 在涂层的一层或多层进行离子束处理。 例如,低-E涂层的外涂层(例如,氮化硅)可以以离子束处理层的方式进行离子束处理,以使离子束处理层包括(a)氮掺杂的Si 3 N 4和 /或(b)氮梯度氮化硅。 已经发现,这样可以改善涂覆制品的耐久性。
摘要:
Certain example embodiments of this invention relate to the use of graphene as a transparent conductive coating (TCC). In certain example embodiments, graphene thin films grown on large areas hetero-epitaxially, e.g., on a catalyst thin film, from a hydrocarbon gas (such as, for example, C 2 H 2 , CH 4 , or the like). The graphene thin films of certain example embodiments may be doped or undoped. In certain example embodiments, graphene thin films, once formed, may be lifted off of their carrier substrates and transferred to receiving substrates, e.g., for inclusion in an intermediate or final product. Graphene grown, lifted, and transferred in this way may exhibit low sheet resistances (e.g., less than 150 ohms/square and lower when doped) and high transmission values (e.g., at least in the visible and infrared spectra).
摘要:
Certain example embodiments of this invention relate to the use of graphene as a transparent conductive coating (TCC). In certain example embodiments, graphene thin films grown on large areas hetero-epitaxially, e.g., on a catalyst thin film, from a hydrocarbon gas (such as, for example, C 2 H 2 , CH 4 , or the like). The graphene thin films of certain example embodiments may be doped or undoped. In certain example embodiments, graphene thin films, once formed, may be lifted off of their carrier substrates and transferred to receiving substrates, e.g., for inclusion in an intermediate or final product. Graphene grown, lifted, and transferred in this way may exhibit low sheet resistances (e.g., less than 150 ohms/square and lower when doped) and high transmission values (e.g., at least in the visible and infrared spectra).
摘要翻译:本发明的某些示例实施例涉及使用石墨烯的作为透明导电敷层(TCC)。 在实施例的某些实施例,石墨烯薄膜上生长大面积的异质外延,例如在催化剂薄膜,从烃气体(检查,例如,C 2 H 2,CH 4等)。 实施例的某些实施例的石墨烯薄膜可以掺杂或不掺杂。 在实施例的某些实施例,石墨烯薄膜,一旦形成,可关断他们的载体基板的被提升,并转移到在中间或最终产物在接收基底,E. G.,列入。 石墨烯生长,解除,并且以这种方式可以表现出低的薄层termoresistencias转印(例如,小于150欧姆/平方和下当掺杂)和高透射率值(例如,至少在可见光和红外光谱)。
摘要:
A method for operating vehicle lights and a light sensor are provided. A capacitive light sensor (4226) is configured to sense a presence and intensity of light over at least three wavelength, with each said wavelength being associated with a respective output channel of the light sensor. A buffer is filled with data from output channels, with the buffer being filled with a predetermined number of data points at a predetermined frequency. An edge change is detected in the data in the buffer. An on/off state (4102, 4106) of the vehicle lights is maintained when an edge change is not detected. The method comprises the steps of determining a speed of the vehicle to adjust thresholds, correlating edge changes in at least two of the first, second, and third channels; and changing the on/off state of the vehicle lights in dependence on the correlation.